winey lab papers of interest

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Winey Lab Papers of Interest Received 2012-2015 Old but recently added POIs A novel role of centrin in flagellar motility: stabilizing an inner-arm dynein motor in the flagellar axoneme. Li Z1. Microb Cell. 2014 Aug http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4380276/ Requirement of the spindle pole body for targeting and/or tethering proteins to the inner nuclear membrane. Diaz-Muñoz G1, Harchar TA, Lai TP, Shen KF, Hopper AK. Nucleus. 2014 Jul-Aug http://www.tandfonline.com/doi/abs/10.4161/nucl.29793?url_ver=Z39.88- 2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VLWEoihLrww Cell Cycle Regulation of the Centrosome and Cilium. Avidor-Reiss T1, Gopalakrishnan J2. Drug Discov Today Dis Mech. 2013 Dec http://www.sciencedirect.com/science/article/pii/S1740676513000114 A systems-biology approach to understanding the ciliopathy disorders. Lee JE1, Gleeson JG. Genome Med. 2011 Sep 26 http://genomemedicine.com/content/3/9/59 2016- 2 1. Keeling, J., Tsiokas, L. & Maskey, D. Cellular Mechanisms of Ciliary Length Control. Cells 5, (2016). 2. Zhang, S. & Mitchell, B. J. Basal bodies in Xenopus. Cilia 5, 2 (2015). Paramecium tetraurelia basal body structure. Tassin AM1, Lemullois M1, Aubusson-Fleury A1. Cilia. 2016 Feb 8 Basal body structure and cell cycle-dependent biogenesis in Trypanosoma brucei. Vaughan S1, Gull K2. Cilia. 2016 Feb 8 Basal body structure and composition in the apicomplexans Toxoplasma and Plasmodium. Francia ME1, Dubremetz JF2, Morrissette NS3. Cilia. 2016 Feb 4

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Page 1: Winey Lab Papers of Interest

Winey Lab Papers of Interest Received 2012-2015 Old but recently added POIs A novel role of centrin in flagellar motility: stabilizing an inner-arm dynein motor in the flagellar axoneme. Li Z1. Microb Cell. 2014 Aug http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4380276/ Requirement of the spindle pole body for targeting and/or tethering proteins to the inner nuclear membrane. Diaz-Muñoz G1, Harchar TA, Lai TP, Shen KF, Hopper AK. Nucleus. 2014 Jul-Aug http://www.tandfonline.com/doi/abs/10.4161/nucl.29793?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VLWEoihLrww Cell Cycle Regulation of the Centrosome and Cilium. Avidor-Reiss T1, Gopalakrishnan J2. Drug Discov Today Dis Mech. 2013 Dec http://www.sciencedirect.com/science/article/pii/S1740676513000114 A systems-biology approach to understanding the ciliopathy disorders. Lee JE1, Gleeson JG. Genome Med. 2011 Sep 26 http://genomemedicine.com/content/3/9/59 2016- 2 1. Keeling, J., Tsiokas, L. & Maskey, D. Cellular Mechanisms of Ciliary Length Control. Cells 5, (2016). 2. Zhang, S. & Mitchell, B. J. Basal bodies in Xenopus. Cilia 5, 2 (2015). Paramecium tetraurelia basal body structure. Tassin AM1, Lemullois M1, Aubusson-Fleury A1. Cilia. 2016 Feb 8 Basal body structure and cell cycle-dependent biogenesis in Trypanosoma brucei. Vaughan S1, Gull K2. Cilia. 2016 Feb 8 Basal body structure and composition in the apicomplexans Toxoplasma and Plasmodium. Francia ME1, Dubremetz JF2, Morrissette NS3. Cilia. 2016 Feb 4

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Toxoplasma gondii Arginine Methyltransferase 1 (PRMT1) Is Necessary for Centrosome Dynamics during Tachyzoite Cell Division. El Bissati K1, Suvorova ES2, Xiao H3, Lucas O2, Upadhya R1, Ma Y1, Hogue Angeletti R3, White MW2, Weiss LM4, Kim K5. MBio. 2016 Feb 2 The Microcephaly-Associated Protein Wdr62/CG7337 Is Required to Maintain Centrosome Asymmetry in Drosophila Neuroblasts. Ramdas Nair A1, Singh P1, Salvador Garcia D1, Rodriguez-Crespo D2, Egger B2, Cabernard C3. Cell Rep. 2016 Feb 9 2016- 1 1. Hibbel, A. et al. Kinesin Kip2 enhances microtubule growth in vitro through length-dependent feedback on polymerization and catastrophe. eLife 4, (2015). 2. Seldin, L., Muroyama, A. & Lechler, T. NuMA-microtubule interactions are critical for spindle orientation and the morphogenesis of diverse epidermal structures. eLife 5, (2016). 3. Sahoo, A., Khare, S., Devanarayanan, S., Jain, P. C. & Varadarajan, R. Residue proximity information and protein model discrimination using saturation-suppressor mutagenesis. eLife 4, (2015). 4. Fricker, R. D. False positives are statistically inevitable. Science 351, 569–570 (2016). 5. Kaiser, J. Calling all failed replication experiments. Science 351, 548–548 (2016). 6. Jung, J. K., Jang, S.-W. & Kim, J. M. A novel role for the deubiquitinase USP1 in the control of centrosome duplication. Cell Cycle 0 (2016). doi:10.1080/15384101.2016.1138185 7. Filges, I. et al. Strømme Syndrome is a Ciliary Disorder Caused by Mutations in CENPF. Hum. Mutat. (2016). doi:10.1002/humu.22960 8. Denu, R. A. et al. Centrosome amplification induces high grade features and is prognostic of worse outcomes in breast cancer. BMC Cancer 16, 47 (2016). 9. Baker, M. How quality control could save your science. Nature News 529, 456 (2016). 10. Meng, D. & Pan, J. A NIMA-related kinase CNK4 regulates ciliary stability and length. Mol. Biol. Cell (2016). doi:10.1091/mbc.E15-10-0707 11. Das, A. et al. Spindle Assembly and Chromosome Segregation Requires Central Spindle Proteins in Drosophila Oocytes. Genetics 202, 61–75 (2016). 12. Silva, E. et al. Ccdc11 is a novel centriolar satellite protein essential for ciliogenesis and establishment of left-right asymmetry. Mol. Biol. Cell 27, 48–63 (2016). 13. Nishio, M. et al. Dysregulated YAP1/TAZ and TGF-β signaling mediate hepatocarcinogenesis in Mob1a/1b-deficient mice. Proc. Natl. Acad. Sci. U.S.A. (2015). doi:10.1073/pnas.1517188113 Centrosome-Dependent Bypass of the DNA Damage Checkpoint by the Polo Kinase Cdc5.

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Ratsima H1, Serrano D1, Pascariu M2, D'Amours D3. Cell Rep. 2016 Jan 27 The E2F-DP1 Transcription Factor Complex Regulates Centriole Duplication in C. elegans. Goeres-Miller JD1, Liu Y1, Williams C1, Smith HE1, O'Connell KF2. G3 (Bethesda). 2016 Jan 15 A non-canonical function of Plk4 in centriolar satellite integrity and ciliogenesis through PCM1 phosphorylation. Hori A1, Barnouin K2, Snijders AP2, Toda T3. EMBO Rep. 2016 Jan 11 Tetrahymena basal bodies. Bayless BA1, Galati DF1, Pearson CG1. Cilia. 2016 Jan 19 Identifying domains of EFHC1 involved in ciliary localization, ciliogenesis, and the regulation of Wnt signaling. Zhao Y1, Shi J1, Winey M1, Klymkowsky MW2. Dev Biol. 2016 Jan 16 The axoneme: the propulsive engine of spermatozoa and cilia and associated ciliopathies leading to infertility. Linck RW1, Chemes H2, Albertini DF3,4. J Assist Reprod Genet. 2016 Jan 29 A novel role for the deubiquitinase USP1 in the control of centrosome duplication. Jung JK1, Jang SW1, Kim JM1. Cell Cycle. 2016 Jan 29 Mammalian axoneme central pair complex proteins: Broader roles revealed by gene knockout phenotypes (pages 3–22) Maria E. Teves, David R. Nagarkatti-Gude, Zhibing Zhang and Jerome F. Strauss III Article first published online: 28 JAN 2016 2015- 12 1. Sanders, A. A. W. M. et al. KIAA0556 is a novel ciliary basal body component mutated in Joubert syndrome. Genome Biol. 16, 293 (2015). 2. Izawa, I., Goto, H., Kasahara, K. & Inagaki, M. Current topics of functional links between primary cilia and cell cycle. Cilia 4, 12 (2015). 3. Galati, D. F., Abuin, D. S., Tauber, G. A., Pham, A. T. & Pearson, C. G. Automated image analysis reveals the dynamic 3-dimensional organization of multi-ciliary arrays. Biol Open (2015). doi:10.1242/bio.014951 4. Wordeman, L. & Decarreau, J. Revisiting Actin’s Role in Early Centrosome Separation. Cell Cycle 0 (2015). doi:10.1080/15384101.2015.1130090 5.

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Coelho, P. A. et al. Over-expression of Plk4 induces centrosome amplification, loss of primary cilia and associated tissue hyperplasia in the mouse. Open Biol 5, (2015). 6. Schatten, G. & Stearns, T. Sperm Centrosomes: Kiss Your Asterless Goodbye, for Fertility’s Sake. Curr. Biol. 25, R1178–1181 (2015). 7. Slaats, G. G. et al. Screen-based identification and validation of four new ion channels as regulators of renal ciliogenesis. J. Cell. Sci. 128, 4550–4559 (2015). 8. Dhawan, J. & Laxman, S. Decoding the stem cell quiescence cycle - lessons from yeast for regenerative biology. J. Cell. Sci. 128, 4467–4474 (2015). 9. Rahman, M. M. et al. Caenorhabditis elegans polo-like kinase PLK-1 is required for merging parental genomes into a single nucleus. Mol. Biol. Cell 26, 4718–4735 (2015). 10. Chen, C.-T. et al. Compartmentalized Toxoplasma EB1 bundles spindle microtubules to secure accurate chromosome segregation. Mol. Biol. Cell 26, 4562–4576 (2015). 11. Fu, J. et al. Conserved molecular interactions in centriole-to-centrosome conversion. Nat. Cell Biol. (2015). doi:10.1038/ncb3274 12. Kim, J., Lee, K. & Rhee, K. PLK1 regulation of PCNT cleavage ensures fidelity of centriole separation during mitotic exit. Nat Commun 6, 10076 (2015). 13. Strzyz, P. Cytoskeleton: Centriole maturation to motherhood. Nat. Rev. Mol. Cell Biol. (2015). doi:10.1038/nrm.2015.12 14. Plevock, K. M., Galletta, B. J., Slep, K. C. & Rusan, N. M. Newly Characterized Region of CP190 Associates with Microtubules and Mediates Proper Spindle Morphology in Drosophila Stem Cells. PLoS ONE 10, e0144174 (2015). 15. Wheeler, R. J., Gluenz, E. & Gull, K. Basal body multipotency and axonemal remodelling are two pathways to a 9+0 flagellum. Nat Commun 6, 8964 (2015). 16. Stinchcombe, J. C. et al. Mother Centriole Distal Appendages Mediate Centrosome Docking at the Immunological Synapse and Reveal Mechanistic Parallels with Ciliogenesis. Curr. Biol. (2015). doi:10.1016/j.cub.2015.10.028 17. Nguyen, L. V. et al. Barcoding reveals complex clonal dynamics of de novo transformed human mammary cells. Nature 528, 267–271 (2015). 18. Derivery, E. et al. Polarized endosome dynamics by spindle asymmetry during asymmetric cell division. Nature 528, 280–285 (2015). 19. Bersani, F. et al. Pericentromeric satellite repeat expansions through RNA-derived DNA intermediates in cancer. Proc. Natl. Acad. Sci. U.S.A. 112, 15148–15153 (2015). 20. Gupta, G. D. et al. A Dynamic Protein Interaction Landscape of the Human Centrosome-Cilium Interface. Cell 163, 1484–1499 (2015). 21. Ito, A. & Goshima, G. Microcephaly protein Asp focuses the minus ends of spindle microtubules at the pole and within the spindle. J Cell Biol 211, 999–1009 (2015). 22.

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Schoborg, T., Zajac, A. L., Fagerstrom, C. J., Guillen, R. X. & Rusan, N. M. An Asp-CaM complex is required for centrosome-pole cohesion and centrosome inheritance in neural stem cells. J. Cell Biol. (2015). doi:10.1083/jcb.201509054 23. Short, B. How the spindle keeps its focus. J Cell Biol 211, 937–937 (2015). 24. Reid, B. J., Culotti, J. G., Nash, R. S. & Pringle, J. R. Forty-five years of cell-cycle genetics. Mol. Biol. Cell 26, 4307–4312 (2015). 25. Kong, J. N. et al. Regulation of Chlamydomonas flagella and ependymal cell motile cilia by ceramide-mediated translocation of GSK3. Mol. Biol. Cell (2015). doi:10.1091/mbc.E15-06-0371 Structural basis of the Inv compartment and ciliary abnormalities in Inv/nphp2 mutant mice (pages 45–56) Takuma Tsuji, Kazuhiko Matsuo, Takashi Nakahari, Yoshinori Marunaka and Takahiko Yokoyama Article first published online: 28 DEC 2015 C21orf2 is mutated in recessive early-onset retinal dystrophy with macular staphyloma and encodes a protein that localises to the photoreceptor primary cilium. Khan AO1, Eisenberger T2, Nagel-Wolfrum K3, Wolfrum U3, Bolz HJ4. Br J Ophthalmol. 2015 Dec 2015- 11 1. Tollenaere, M. A. X. et al. p38- and MK2-dependent signalling promotes stress-induced centriolar satellite remodelling via 14-3-3-dependent sequestration of CEP131/AZI1. Nat Commun 6, 10075 (2015). 2. van Ree, J. H., Nam, H.-J. & van Deursen, J. M. Mitotic kinase cascades orchestrating timely disjunction and movement of centrosomes maintain chromosomal stability and prevent cancer. Chromosome Res. (2015). doi:10.1007/s10577-015-9501-9 3. Schoborg, T., Zajac, A. L., Fagerstrom, C. J., Guillen, R. X. & Rusan, N. M. An Asp-CaM complex is required for centrosome-pole cohesion and centrosome inheritance in neural stem cells. J. Cell Biol. (2015). doi:10.1083/jcb.201509054 4. Yonezawa, S., Shigematsu, M., Hirata, K. & Hayashi, K. Loss of γ-tubulin, GCP-WD/NEDD1 and CDK5RAP2 from the Centrosome of Neurons in Developing Mouse Cerebral and Cerebellar Cortex. Acta Histochem Cytochem 48, 145–152 (2015). 5. Tran, P. V. & Lechtreck, K. F. An age of enlightenment for cilia: The FASEB summer research conference on the ‘Biology of Cilia and Flagella’. Dev. Biol. (2015). doi:10.1016/j.ydbio.2015.10.030 6. Fu, J. et al. Conserved molecular interactions in centriole-to-centrosome conversion. Nat. Cell Biol. (2015). doi:10.1038/ncb3274 7. Serçin, Ö. et al. Transient PLK4 overexpression accelerates tumorigenesis in p53-deficient epidermis. Nat. Cell Biol. (2015). doi:10.1038/ncb3270 8. Wang, W.-J. et al. De novo centriole formation in human cells is error-prone and does not require SAS-6 self-assembly. Elife 4, (2015).

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9. Mullee, L. I. & Morrison, C. G. Centrosomes in the DNA damage response-the hub outside the centre. Chromosome Res. (2015). doi:10.1007/s10577-015-9503-7 10. Yee, L. E. et al. Conserved Genetic Interactions between Ciliopathy Complexes Cooperatively Support Ciliogenesis and Ciliary Signaling. PLoS Genet. 11, e1005627 (2015). 11. Takeuchi, K. et al. Recent advances in primary ciliary dyskinesia. Auris Nasus Larynx (2015). doi:10.1016/j.anl.2015.09.012 12. Geister, K. A. et al. LINE-1 Mediated Insertion into Poc1a (Protein of Centriole 1 A) Causes Growth Insufficiency and Male Infertility in Mice. PLoS Genet. 11, e1005569 (2015). 13. Divi, K. V., Ward, Y., Poirier, M. C. & Olivero, O. A. Use of Ciliogenesis to Detect Aneugens: The Role of Primary Cilia. Curr Protoc Toxicol 66, 3.13.1–8 (2015). 14. Mukai, S. et al. Lats1 suppresses centrosome overduplication by modulating the stability of Cdc25B. Sci Rep 5, 16173 (2015). 15. Conduit, P. T., Wainman, A., Novak, Z. A., Weil, T. T. & Raff, J. W. Re-examining the role of Drosophila Sas-4 in centrosome assembly using two-colour-3D-SIM FRAP. Elife 4, (2015). 16. Silva, E. et al. Ccdc11 is a novel centriolar satellite protein essential for ciliogenesis and establishment of Left-Right asymmetry. Mol. Biol. Cell (2015). doi:10.1091/mbc.E15-07-0474 17. Hori, A. et al. The conserved Wdr8-hMsd1/SSX2IP complex localises to the centrosome and ensures proper spindle length and orientation. Biochem. Biophys. Res. Commun. 468, 39–45 (2015). 18. Mori, Y., Inoue, Y., Taniyama, Y., Tanaka, S. & Terada, Y. Phosphorylation of the centrosomal protein, Cep169, by Cdk1 promotes its dissociation from centrosomes in mitosis. Biochem. Biophys. Res. Commun. (2015). doi:10.1016/j.bbrc.2015.11.004 19. Kulukian, A. et al. Epidermal development, growth control, and homeostasis in the face of centrosome amplification. Proc. Natl. Acad. Sci. U.S.A. 112, E6311–6320 (2015). 20. Vitre, B. et al. Chronic centrosome amplification without tumorigenesis. Proc. Natl. Acad. Sci. U.S.A. 112, E6321–6330 (2015). 21. Bolgioni, A. F. & Ganem, N. J. The interplay between centrosomes and the Hippo tumor suppressor pathway. Chromosome Res. (2015). doi:10.1007/s10577-015-9502-8 22. Srinivas, V., Kitagawa, M., Wong, J., Liao, P.-J. & Lee, S. H. The Tumor Suppressor Cdkn3 Is Required for Maintaining the Proper Number of Centrosomes by Regulating the Centrosomal Stability of Mps1. Cell Rep (2015). doi:10.1016/j.celrep.2015.10.039 23. Kryukova, E., Kryukov, F. & Hajek, R. Centrosome amplification and clonal evolution in multiple myeloma: Short review. Crit. Rev. Oncol. Hematol. (2015). doi:10.1016/j.critrevonc.2015.10.019 Specific CP110 Phosphorylation Sites Mediate Anaphase Catastrophe after CDK2 Inhibition: Evidence for Cooperation with USP33 Knockdown.

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Hu S1, Lu Y1, Orr B2, Godek K2, Mustachio LM1, Kawakami M1, Sekula D1, Compton DA3, Freemantle S1, Dmitrovsky E4. Mol Cancer Ther. 2015 Nov 2015- 10 1. Katta, S. S. et al. Sec66-Dependent Regulation of Yeast Spindle Pole Body Duplication Through Pom152. Genetics (2015). doi:10.1534/genetics.115.178012 2. Srour, M. et al. Joubert Syndrome in French Canadians and Identification of Mutations in CEP104. Am. J. Hum. Genet. (2015). doi:10.1016/j.ajhg.2015.09.009 3. Khire, A., Vizuet, A. A., Davila, E. & Avidor-Reiss, T. Asterless Reduction during Spermiogenesis Is Regulated by Plk4 and Is Essential for Zygote Development in Drosophila. Curr. Biol. (2015). doi:10.1016/j.cub.2015.09.045 4. Chen, J. V. et al. Rootletin organizes the ciliary rootlet to achieve neuron sensory function in Drosophila. J. Cell Biol. 211, 435–453 (2015). 5. Gottardo, M., Callaini, G. & Giovanna Riparbelli, M. Structural characterization of procentrioles in Drosophila spermatids. Cytoskeleton (Hoboken) (2015). doi:10.1002/cm.21260 6. Endicott, S. J., Basu, B., Khokha, M. & Brueckner, M. The NIMA-like kinase Nek2 is a key switch balancing cilia biogenesis and resorption in the development of left-right asymmetry. Development (2015). doi:10.1242/dev.126953 7. Gönczy, P. Centrosomes and cancer: revisiting a long-standing relationship. Nat. Rev. Cancer 15, 639–652 (2015). 8. Burns, S. et al. Structured illumination with particle averaging reveals novel roles for yeast centrosome components during duplication. Elife 4, (2015). 9. Eisman, R. C., Phelps, M. A. S. & Kaufman, T. An Amino-Terminal Polo Kinase Interaction Motif Acts in the Regulation of Centrosome Formation and Reveals a Novel Function for centrosomin (cnn) in Drosophila. Genetics 201, 685–706 (2015). 10. Buschmann, H., Holtmannspötter, M., Borchers, A., O’Donoghue, M.-T. & Zachgo, S. Microtubule dynamics of the centrosome-like polar organizers from the basal land plant Marchantia polymorpha. New Phytol. (2015). doi:10.1111/nph.13691 11. Chen, C. et al. Characterization of Cep85 - a new antagonist of Nek2A that is involved in the regulation of centrosome disjunction. J. Cell. Sci. 128, 3837 (2015). 12. Lopes, C. A. M. et al. PLK4 trans-Autoactivation Controls Centriole Biogenesis in Space. Dev. Cell (2015). doi:10.1016/j.devcel.2015.09.020 13. Mori, Y., Taniyama, Y., Tanaka, S., Fukuchi, H. & Terada, Y. Microtubule-bundling activity of Cep169 and its binding to microtubules. Biochem. Biophys. Res. Commun. (2015). doi:10.1016/j.bbrc.2015.10.069 14. Mori, Y. et al. Cep169, a Novel Microtubule Plus-End-Tracking Centrosomal Protein, Binds to CDK5RAP2 and Regulates Microtubule Stability. PLoS ONE 10, e0140968 (2015).

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15. Chug, H., Trakhanov, S., Hülsmann, B. B., Pleiner, T. & Görlich, D. Crystal structure of the metazoan Nup62•Nup58•Nup54 nucleoporin complex. Science 350, 106–110 (2015). 16. Stuwe, T. et al. Architecture of the fungal nuclear pore inner ring complex. Science 350, 56–64 (2015). 17. Ullman, K. S. & Powers, M. A. STRUCTURAL BIOLOGY. Locking down the core of the pore. Science 350, 33–34 (2015). 18. Gasic, I., Nerurkar, P. & Meraldi, P. Centrosome age regulates kinetochore-microtubule stability and biases chromosome mis-segregation. Elife 4, (2015). 19. Croessmann, S. et al. NDRG1 links p53 with proliferation-mediated centrosome homeostasis and genome stability. Proc. Natl. Acad. Sci. U.S.A. 112, 11583–11588 (2015). A Novel Basal Body Protein That Is a Polo-like Kinase Substrate Is Required for Basal Body Segregation and Flagellum Adhesion in Trypanosoma brucei. Hu H1, Zhou Q1, Li Z2. J Biol Chem. 2015 Oct 9 Centrosome-intrinsic mechanisms modulate centrosome integrity during fever. Vertii A1, Zimmerman W1, Ivshina M1, Doxsey S2. Mol Biol Cell. 2015 Oct 1 Ploidy manipulation and induction of alternate cleavage patterns through inhibition of centrosome duplication in the early zebrafish embryo. Heier J1, Takle KA1, Hasley AO1, Pelegri F1. Dev Dyn. 2015 Oct 2015- 09 1. Jensen, V. L. et al. Formation of the transition zone by Mks5/Rpgrip1L establishes a ciliary zone of exclusion (CIZE) that compartmentalises ciliary signalling proteins and controls PIP2 ciliary abundance. EMBO J. (2015). doi:10.15252/embj.201488044 2. Einarsdottir, E. et al. Mutation in CEP63 co-segregating with developmental dyslexia in a Swedish family. Hum. Genet. (2015). doi:10.1007/s00439-015-1602-1 3. Seo, M. Y., Jang, W. & Rhee, K. Integrity of the Pericentriolar Material Is Essential for Maintaining Centriole Association during M Phase. PLoS ONE 10, e0138905 (2015). 4. Stephen, L. A. et al. TALPID3 controls centrosome and cell polarity and the human ortholog KIAA0586 is mutated in Joubert syndrome (JBTS23). Elife 4, (2015). 5. Basto, R. & Oegema, K. Methods in Cell Biology. Centrosome & Centriole. Preface. Methods Cell Biol. 129, xvii–xix (2015). 6. Dumoux, M., Menny, A., Delacour, D. & Hayward, R. D. A Chlamydia effector recruits CEP170 to reprogram host microtubule organization. J. Cell. Sci. 128, 3420–3434 (2015). 7.

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Schnerch, D. & Nigg, E. A. Structural centrosome aberrations favor proliferation by abrogating microtubule-dependent tissue integrity of breast epithelial mammospheres. Oncogene (2015). doi:10.1038/onc.2015.332 8. Tony Yang, T. et al. Superresolution Pattern Recognition Reveals the Architectural Map of the Ciliary Transition Zone. Sci Rep 5, 14096 (2015). 9. Symoens, S. et al. Genetic Defects in TAPT1 Disrupt Ciliogenesis and Cause a Complex Lethal Osteochondrodysplasia. Am. J. Hum. Genet. (2015). doi:10.1016/j.ajhg.2015.08.009 10. Burns, S. et al. Structured illumination with particle averaging reveals novel roles for yeast centrosome components during duplication. Elife 4, (2015). 11. Conduit, P. T., Wainman, A. & Raff, J. W. Centrosome function and assembly in animal cells. Nat. Rev. Mol. Cell Biol. (2015). doi:10.1038/nrm4062 12. Barraza-García, J. et al. Two novel POC1A mutations in the Primordial dwarfism, SOFT syndrome: Clinical homogeneity but also unreported malformations. Am. J. Med. Genet. A (2015). doi:10.1002/ajmg.a.37393 13. Petry, S. & Vale, R. D. Microtubule nucleation at the centrosome and beyond. Nat. Cell Biol. 17, 1089–1093 (2015). 14. Croessmann, S. et al. NDRG1 links p53 with proliferation-mediated centrosome homeostasis and genome stability. Proc. Natl. Acad. Sci. U.S.A. 112, 11583–11588 (2015). 15. Chen, J.-H. et al. Truncation of POC1A associated with short stature and extreme insulin resistance. J. Mol. Endocrinol. 55, 147–158 (2015). 16. Van de Mark, D., Kong, D., Loncarek, J. & Stearns, T. MDM1 is a microtubule-binding protein that negatively regulates centriole duplication. Mol. Biol. Cell (2015). doi:10.1091/mbc.E15-04-0235 17. Viguès, B., Colombet, J. & Damaj, R. Differential localization and functional specialization of centrin analogs in the parasitic ciliate Trichodina pediculus. Protoplasma (2015). doi:10.1007/s00709-015-0878-2 18. Li, F.-Q., Siller, S. S. & Takemaru, K.-I. Basal body docking in airway ciliated cells. Oncotarget 6, 19944–19945 (2015). 19. Vertii, A., Bright, A., Delaval, B., Hehnly, H. & Doxsey, S. New frontiers: discovering cilia-independent functions of cilia proteins. EMBO Rep. (2015). doi:10.15252/embr.201540632 20. Sawant, D. B. et al. Centrin 3 is an inhibitor of centrosomal Mps1 and antagonizes Centrin 2 function. Mol. Biol. Cell (2015). doi:10.1091/mbc.E14-07-1248 Nek5: a new regulator of centrosome integrity. Prosser SL1, Fry AM2. Oncotarget. 2015 Sep 22;6(28):24594-5 LEGOs® and legacies of centrioles and centrosomes. Schatten G1, Simerly C1. MBO Rep. 2015 Sep

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8/2015 Reduced tubulin polyglutamylation suppresses flagellar shortness in Chlamydomonas. Kubo T1, Hirono M2, Aikawa T2, Kamiya R3, Witman GB4. Mol Biol Cell. 2015 Aug 1 Ciliary adenylyl cyclases control the Hedgehog pathway. Vuolo L1, Herrera A1, Torroba B1, Menendez A1, Pons S2. J Cell Sci. 2015 Aug 1 The lamin-A/C-LAP2α-BAF1 protein complex regulates mitotic spindle assembly and positioning. Qi R1, Xu N1, Wang G1, Ren H1, Li S1, Lei J1, Lin Q1, Wang L1, Gu X1, Zhang H2, Jiang Q3, Zhang C3. J Cell Sci. 2015 Aug 1 Isotropic incorporation of SPD-5 underlies centrosome assembly in C. elegans. Laos T1, Cabral G1, Dammermann A2. Curr Biol. 2015 Aug 3 Different Drosophila cell types exhibit differences in mitotic centrosome assembly dynamics. Conduit PT1, Raff JW2. Curr Biol. 2015 Aug 3 Centrosome biology: the ins and outs of centrosome assembly. Prosser SL1, Pelletier L2. Curr Biol. 2015 Aug 3 Deacetylation of α-tubulin and cortactin is required for HDAC6 to trigger ciliary disassembly. Ran J1, Yang Y1, Li D1, Liu M1, Zhou J1. Sci Rep. 2015 Aug 6 Developmental alterations in centrosome integrity contribute to the post-mitotic state of mammalian cardiomyocytes. Zebrowski DC1, Vergarajauregui S1, Wu CC2, Piatkowski T3, Becker R1, Leone M1, Hirth S4, Ricciardi F5, Falk N6, Giessl A6, Just S4, Braun T3, Weidinger G2, Engel FB1. Elife. 2015 Aug 6 Chibby functions to preserve normal ciliary morphology through the regulation of intraflagellar transport in airway ciliated cells. Siller SS1,2,3, Burke MC1,4, Li FQ2,3, Takemaru K1,2,3,4. Cell Cycle. 2015 Building a ninefold symmetrical barrel: structural dissections of centriole assembly. Dong G1. Open Biol. 2015 Aug Loss of primary cilia correlates with cytologic severity in dysplastic melanocytic nevi. Lang UE1, Cheung C1, Vladar EK1, Swetter SM2,3, Kim J1,2.

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J Cutan Pathol. 2015 Aug 14 Comparing the Bbs10 complete knockout phenotype with a specific renal epithelial knockout one highlights the link between renal defects and systemic inactivation in mice. Cognard N1, Scerbo MJ2, Obringer C2, Yu X2, Costa F2, Haser E2, Le D2, Stoetzel C2, Roux MJ3, Moulin B4, Dollfus H5, Marion V2. Cilia. 2015 Aug 13 Zeta-Tubulin Is a Member of a Conserved Tubulin Module and Is a Component of the Centriolar Basal Foot in Multiciliated Cells. Turk E1, Wills AA2, Kwon T2, Sedzinski J2, Wallingford JB3, Stearns T4. Curr Biol. 2015 Aug 17;25(16):2177-83. doi: 10.1016/j.cub.2015.06.063. Epub 2015 Jul 30. Centrosome age regulates kinetochore-microtubule stability and biases chromosome mis-segregation. Gasic I1, Nerurkar P2, Meraldi P1. Elife. 2015 Aug 19 Plk1 relieves centriole block to reduplication by promoting daughter centriole maturation. Shukla A1, Kong D1, Sharma M1, Magidson V2, Loncarek J1. Nat Commun. 2015 Aug 21 Phosphoinositides Regulate Ciliary Protein Trafficking to Modulate Hedgehog Signaling. Garcia-Gonzalo FR1, Phua SC2, Roberson EC1, Garcia G 3rd1, Abedin M1, Schurmans S3, Inoue T4, Reiter JF5. Dev Cell. 2015 Aug 24 A Phosphoinositide Code for Primary Cilia. Nakatsu F1 Dev Cell. 2015 Aug 24 Mechanistic Origin of Microtubule Dynamic Instability and Its Modulation by EB Proteins. Zhang R1, Alushin GM2, Brown A3, Nogales E4. Cell. 2015 Aug 13 Direct Microtubule-Binding by Myosin-10 Orients Centrosomes toward Retraction Fibers and Subcortical Actin Clouds. Kwon M1, Bagonis M2, Danuser G2, Pellman D3. Dev Cell. 2015 Aug 10 Centriolar satellites assemble centrosomal microcephaly proteins to recruit CDK2 and promote centriole duplication. Kodani A1, Yu TW2, Johnson JR3, Jayaraman D2, Johnson TL3, Al-Gazali L4, Sztriha L4, Partlow JN2, Kim H1, Krup AL1, Dammermann A5, Krogan NJ3, Walsh CA2, Reiter JF1. Elife. 2015 Aug 22;4 Loss of Centrobin Enables Daughter Centrioles to Form Sensory Cilia in Drosophila. Gottardo M Pollarolo G Llamazares S Reina J Riparbelli MG Callaini G Gonzalez C Gonzalez C Curr Biol Aug 19 2015

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Emerging roles of sumoylation in the regulation of actin, microtubules, intermediate filaments, and septins (pages 305–339) Annabel Alonso, Matt Greenlee, Jessica Matts, Jake Kline, Kayla J. Davis and Rita K. Miller Article first published online: 22 AUG 2015 ADVANCED IMAGING. Extended-resolution structured illumination imaging of endocytic and cytoskeletal dynamics. Li D1, Shao L1, Chen BC1, Zhang X2, Zhang M3, Moses B4, Milkie DE4, Beach JR5, Hammer JA 3rd5, Pasham M6, Kirchhausen T6, Baird MA7, Davidson MW8, Xu P3, Betzig E9. Science. 2015 Aug 28 The Deubiquitinase USP37 Regulates Chromosome Cohesion and Mitotic Progression. Yeh C1, Coyaud É2, Bashkurov M3, van der Lelij P4, Cheung SW3, Peters JM4, Raught B5, Pelletier L6. Curr Biol. 2015 Aug 31 7/2015 The deubiquitinating enzyme complex BRISC is required for proper mitotic spindle assembly in mammalian cells. Yan K1, Li L2, Wang X3, Hong R4, Zhang Y2, Yang H2, Lin M2, Zhang S2, He Q5, Zheng D6, Tang J3, Yin Y7, Shao G8. J Cell Biol. 2015 Jul 20 Non-Overlapping Distributions and Functions of the VDAC Family in Ciliogenesis. Majumder S1, Cash A2, Fisk HA3. Cells. 2015 Jul 31 Centrosome separation; a careful balancing act. Whalley HJ1, Malliri A1. Cell Cycle. 2015;14(19):3001-2. ATF5 is an essential protein in the centrosome. Lengel K, Kim E, Liu DX. Cell Cycle. 2015;14(20):3215-6. Control of the spindle checkpoint by lateral kinetochore attachment and limited Mad1 recruitment. Krefman NI1, Drubin DG1, Barnes G2. Mol Biol Cell. 2015 Jul 15 http://www.molbiolcell.org/content/26/14/2620.long CENP-C is a blueprint for constitutive centromere-associated network assembly within human kinetochores. Klare K1, Weir JR1, Basilico F2, Zimniak T3, Massimiliano L4, Ludwigs N5, Herzog F3, Musacchio A6. J Cell Biol. 2015 Jul 6 http://jcb.rupress.org/content/210/1/11.long STIL binding to Polo-box 3 of PLK4 regulates centriole duplication. Arquint C1, Gabryjonczyk AM1, Imseng S1, Böhm R1, Sauer E1, Hiller S1, Nigg EA1, Maier T1.

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Elife. 2015 Jul 18 http://elifesciences.org/content/early/2015/07/17/eLife.07888 Knockdown of poc1b causes abnormal photoreceptor sensory cilia and vision impairment in zebrafish. Zhang C1, Zhang Q2, Wang F3, Liu Q4. Biochem Biophys Res Commun. 2015 Jul 15 http://www.sciencedirect.com/science/article/pii/S0006291X15301364 The Drosophila centriole – conversion of doublets into triplets within the stem cell niche Marco Gottardo, Giuliano Callaini, and Maria Giovanna Riparbelli J Cell Sci 2015 http://jcs.biologists.org/content/128/14/2437.abstract?etoc Fly centrioles – different after all J Cell Sci 2015 128:e1404 http://jcs.biologists.org/content/128/14/e1404?etoc Kinetochore-localized PP1-Sds22 couples chromosome segregation to polar relaxation. Rodrigues NT1, Lekomtsev S1, Jananji S2, Kriston-Vizi J1, Hickson GR3, Baum B4. Nature. 2015 Jul 13 http://www.nature.com/nature/journal/vaop/ncurrent/full/nature14496.html?WT.ec_id=NATURE-20150716&spMailingID=49105942&spUserID=MjA1NzYyNzEzOAS2&spJobID=721929223&spReportId=NzIxOTI5MjIzS0 p53 protects against genome instability following centriole duplication failure. Lambrus BG1, Uetake Y2, Clutario KM1, Daggubati V1, Snyder M1, Sluder G2, Holland AJ3. J Cell Biol. 2015 Jul 6;210(1):63-77. doi: 10.1083/jcb.201502089. http://jcb.rupress.org/content/210/1/63.long Interphase centrosome organization by the PLP-Cnn scaffold is required for centrosome function. Lerit DA1, Jordan HA1, Poulton JS2, Fagerstrom CJ1, Galletta BJ1, Peifer M2, Rusan NM3. J Cell Biol. 2015 Jul 6 http://jcb.rupress.org/content/210/1/79.long The transition zone protein Rpgrip1l regulates proteasomal activity at the primary cilium. Gerhardt C1, Lier JM2, Burmühl S2, Struchtrup A2, Deutschmann K2, Vetter M2, Leu T2, Reeg S3, Grune T3, Rüther U2. J Cell Biol. 2015 Jul 6 http://jcb.rupress.org/content/210/1/1027.long Amplified centrosomes may underlie aggressive disease course in pancreatic ductal adenocarcinoma. Mittal K1, Ogden A, Reid MD, Rida PC, Varambally S, Aneja R. Cell Cycle. 2015 Jul 7 http://www.tandfonline.com/doi/abs/10.1080/15384101.2015.1068478?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.Va0SzKYdc7A

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The Drosophila Pericentrin-like-protein (PLP) cooperates with Cnn to maintain the integrity of the outer PCM. Richens JH1, Barros TP2, Lucas EP2, Peel N2, Pinto DM3, Wainman A1, Raff JW4. Biol Open. 2015 Jul 8 http://bio.biologists.org/content/early/2015/07/03/bio.012914.long CEP63 deficiency promotes p53-dependent microcephaly and reveals a role for the centrosome in meiotic recombination. Marjanović M1, Sánchez-Huertas C2, Terré B2, Gómez R3, Scheel JF4, Pacheco S5, Knobel PA2, Martínez-Marchal A5, Aivio S2, Palenzuela L2, Wolfrum U4, McKinnon PJ6, Suja JA3, Roig I5, Costanzo V7, Lüders J2, Stracker TH2. Nat Commun. 2015 Jul 9 http://www.nature.com/ncomms/2015/150709/ncomms8676/full/ncomms8676.html The ciliary transition zone functions in cell adhesion but is dispensable for axoneme assembly in C. elegans. Schouteden C1, Serwas D1, Palfy M1, Dammermann A2. J Cell Biol. 2015 Jul 6 http://jcb.rupress.org/content/210/1/35.long The Drosophila homologue of Rootletin is required for mechanosensory function and ciliary rootlet formation in chordotonal sensory neurons. Styczynska-Soczka K1, Jarman AP1. Cilia. 2015 Jul 2 http://www.ciliajournal.com/content/4/1/9 Structures of actin-like ParM filaments show architecture of plasmid-segregating spindles. Bharat TA1, Murshudov GN1, Sachse C2, Löwe J1. Nature. 2015 Jul 2 http://www.nature.com/nature/journal/v523/n7558/full/nature14356.html Cdc6 degradation requires phosphodegron created by GSK-3 and Cdk1 for SCFCdc4 recognition in Saccharomyces cerevisiae. Al-Zain A1, Schroeder L1, Sheglov A1, Ikui AE2. Mol Biol Cell. 2015 Jul 15 http://www.molbiolcell.org/content/26/14/2609.long A stable microtubule array drives fission yeast polarity reestablishment upon quiescence exit. Laporte D1, Courtout F1, Pinson B1, Dompierre J1, Salin B1, Brocard L2, Sagot I3 J Cell Biol. 2015 Jul 6 jcb.rupress.org/cgi/pmidlookup?view=long&pmid=26124291 Mio depletion links mTOR regulation to Aurora A and Plk1 activation at mitotic centrosomes. Platani M1, Trinkle-Mulcahy L2, Porter M3, Jeyaprakash AA4, Earnshaw WC1. J Cell Biol. 2015 Jul 6 http://jcb.rupress.org/content/210/1/45.long Control of the pericentrosomal H2O2 level by peroxiredoxin I is critical for mitotic progression. Lim JM1, Lee KS2, Woo HA1, Kang D3, Rhee SG4.

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J Cell Biol. 2015 Jul 6; http://jcb.rupress.org/content/210/1/23.long Centrosomal AKAP350 and CIP4 act in concert to define the polarized localization of the centrosome and Golgi in migratory cells Facundo M. Tonucci, Florencia Hidalgo, Anabela Ferretti, Evangelina Almada, Cristián Favre, James R. Goldenring, Irina Kaverina, Arlinet Kierbel, and M. Cecilia Larocca J Cell Sci 2015 128:3277-3289; Advance Online Article July 24, 2015 6/2015 The mesh is a network of microtubule connectors that stabilizes individual kinetochore fibers of the mitotic spindle. Nixon FM1, Gutiérrez-Caballero C1, Hood FE2, Booth DG2, Prior IA2, Royle SJ1. Elife. 2015 Jun 19;4. Atomic structure of the APC/C and its mechanism of protein ubiquitination. Chang L1, Zhang Z1, Yang J1, McLaughlin SH1, Barford D1. Nature. 2015 Jun 25 http://www.nature.com/nature/journal/v522/n7557/full/nature14471.html Aurora B-mediated localized delays in nuclear envelope formation facilitate inclusion of late-segregating chromosome fragments. Karg T1, Warecki B1, Sullivan W2. Mol Biol Cell. 2015 Jun 15 http://www.molbiolcell.org/content/26/12/2227.long The Ubp15 deubiquitinase promotes timely entry into S phase in Saccharomyces cerevisiae. Ostapenko D1, Burton JL1, Solomon MJ2. Mol Biol Cell. 2015 Jun 15 http://www.molbiolcell.org/content/26/12/2205.long SPD-2/CEP192 and CDK Are Limiting for Microtubule-Organizing Center Function at the Centrosome. Yang R1, Feldman JL2. Curr Biol. 2015 Jun 24 http://www.sciencedirect.com/science/article/pii/S0960982215006661 KIAA0586 is Mutated in Joubert Syndrome. Bachmann-Gagescu R1,2, Phelps IG3, Dempsey JC3, Sharma VA3, Ishak GE4, Boyle EA5,6, Wilson M7, Marques Lourenço C8, Arslan M9; University of Washington Center for Mendelian Genomics, Shendure J5, Doherty D3. Hum Mutat. 2015 Jun 11 http://onlinelibrary.wiley.com/doi/10.1002/humu.22821/abstract Binding of STIL to Plk4 activates kinase activity to promote centriole assembly. Moyer TC1, Clutario KM1, Lambrus BG1, Daggubati V1, Holland AJ2. J Cell Biol. 2015 Jun 22 http://jcb.rupress.org/content/209/6/863.long

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The centriole cartwheel protein SAS-6 in Trypanosoma brucei is required for pro-basal body biogenesis and flagellum assembly. Hu H1, Liu Y1, Zhou Q1, Siegel S1, Li Z2. Eukaryot Cell. 2015 Jun 26 http://ec.asm.org/content/early/2015/06/23/EC.00083-15.long Strategies from UW-Madison for rescuing biomedical research in the US. Kimble J1, Bement WM2, Chang Q3, Cox BL4, Drinkwater NR5, Gourse RL6, Hoskins AA7, Huttenlocher A8, Kreeger PK9, Lambert PF5, Mailick MR10, Miyamoto S11, Moss RL12, O'Connor-Giles KM13, Roopra A14, Saha K15, Seidel HS7. Elife. 2015 Jun 30 http://elifesciences.org/content/4/e09305?utm_source=content_alert&utm_medium=email&utm_content=fulltext&utm_campaign=elife-alerts Mitotic Control of Planar Cell Polarity by Polo-like Kinase 1. Shrestha R1, Little KA1, Tamayo JV1, Li W1, Perlman DH2, Devenport D3. Dev Cell. 2015 Jun 8 http://www.cell.com/developmental-cell/abstract/S1534-5807(15)00220-8?elsca1=etoc&elsca2=email&elsca3=1534-5807_20150608_33_5_&elsca4=Cell%20Press Planar Pol(o)arity. Sedzinski J1, Wallingford J2. Dev Cell. 2015 Jun 8 http://www.cell.com/developmental-cell/abstract/S1534-5807(15)00358-5?elsca1=etoc&elsca2=email&elsca3=1534-5807_20150608_33_5_&elsca4=Cell%20Press Cilia: Organelles at the Heart of Heart Disease. Narasimhan V1, Roy S2. Curr Biol. 2015 Jun 29 http://www.cell.com/current-biology/abstract/S0960-9822(15)00549-7?elsca1=etoc&elsca2=email&elsca3=0960-9822_20150629_25_13_&elsca4=Cell%20Press Kar1 binding to Sfi1 C-terminal regions anchors the SPB bridge to the nuclear envelope. Seybold C1, Elserafy M1, Rüthnick D1, Ozboyaci M2, Neuner A1, Flottmann B3, Heilemann M3, Wade RC4, Schiebel E5. J Cell Biol. 2015 Jun 22 http://jcb.rupress.org/content/209/6/843.long The microtubule nucleation activity of centrobin in both the centrosome and cytoplasm. Shin W1, Yu NK, Kaang BK, Rhee K. Cell Cycle. 2015 Jun 18 http://www.tandfonline.com/doi/abs/10.1080/15384101.2015.1041683?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.Va0OB6Ydc7A TRIM28 is an E3 ligase for ARF-mediated NPM1/B23 SUMOylation that represses centrosome amplification. Neo SH1, Itahana Y2, Alagu J2, Kitagawa M2, Guo AK2, Lee SH2, Tang K3, Itahana K1. Mol Cell Biol. 2015 Jun 8 http://mcb.asm.org/content/early/2015/06/03/MCB.01064-14.long

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Spastin and ESCRT-III coordinate mitotic spindle disassembly and nuclear envelope sealing. Vietri M1, Schink KO1, Campsteijn C1, Wegner CS1, Schultz SW1, Christ L1, Thoresen SB1, Brech A1, Raiborg C1, Stenmark H2. Nature. 2015 Jun 11 http://www.nature.com/nature/journal/v522/n7555/full/nature14408.html Chromothripsis from DNA damage in micronuclei. Zhang CZ1, Spektor A2, Cornils H3, Francis JM4, Jackson EK5, Liu S3, Meyerson M6, Pellman D7. Nature. 2015 Jun 11 http://www.nature.com/nature/journal/v522/n7555/full/nature14493.html Cell biology: the micronucleus gets its big break. Knouse KA1, Amon A1. Nature. 2015 Jun 11 http://www.nature.com/nature/journal/v522/n7555/full/nature14528.html The Meckel-Gruber syndrome protein TMEM67 controls basal body positioning and epithelial branching morphogenesis in mice via the non-canonical Wnt pathway. Abdelhamed ZA1, Natarajan S2, Wheway G2, Inglehearn CF2, Toomes C2, Johnson CA3, Jagger DJ4. Dis Model Mech. 2015 Jun 1 http://dmm.biologists.org/content/8/6/527.long Cell biology. Centrioles, in absentia. Stearns T1. Science. 2015 Jun 5 http://www.sciencemag.org/content/348/6239/1091.long Yeast Proteome Dynamics from Single Cell Imaging and Automated Analysis. Chong YT1, Koh JL1, Friesen H1, Duffy K2, Cox MJ2, Moses A3, Moffat J2, Boone C2, Andrews BJ4. Cell. 2015 Jun 4 http://www.sciencedirect.com/science/article/pii/S0092867415005267 Chromatids segregate without centrosomes during Caenorhabditis elegans mitosis in a Ran- and CLASP-dependent manner. Nahaboo W1, Zouak M1, Askjaer P2, Delattre M3. Mol Biol Cell. 2015 Jun 1 Centriolar satellite- and hMsd1/SSX2IP-dependent microtubule anchoring is critical for centriole assembly. Hori A1, Peddie CJ1, Collinson LM1, Toda T2. Mol Biol Cell. 2015 Jun 1 http://www.molbiolcell.org/content/26/11/2005.abstract?etoc 5/2015 Developmental role of plk4 in Xenopus laevis and Danio rerio: implications for Seckel Syndrome. Rapchak CE1, Patel N2, Hudson J1, Crawford M1.

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Lee KL1, Guevarra MD1, Nguyen AM2, Chua MC3, Wang Y4, Jacobs CR1. Cilia. 2015 May 29 http://www.ciliajournal.com/content/4/1/7 The Msd1-Wdr8-Pkl1 complex anchors microtubule minus ends to fission yeast spindle pole bodies. Yukawa M1, Ikebe C2, Toda T3. J Cell Biol. 2015 May 25 http://jcb.rupress.org/content/209/4/549.long A novel function of Huntingtin in the cilium and retinal ciliopathy in Huntington's disease mice. Karam A1, Tebbe L2, Weber C1, Messaddeq N1, Morlé L3, Kessler P1, Wolfrum U4, Trottier Y5. Neurobiol Dis. 2015 May 16 http://www.sciencedirect.com/science/article/pii/S0969996115001709 The centrosomal linker and microtubules provide dual levels of spatial coordination of centrosomes. Panic M1, Hata S1, Neuner A1, Schiebel E1. PLoS Genet. 2015 May 22 http://journals.plos.org/plosgenetics/article?id=10.1371/journal.pgen.1005243 SUMOylation regulates ciliary localization of olfactory signaling proteins. McIntyre JC1, Joiner AM2, Zhang L1, Iñiguez-Lluhí J2, Martens JR3. J Cell Sci. 2015 May 15 http://jcs.biologists.org/content/128/10/1934.abstract?etoc Metallothionein as a clonable tag for protein localization by electron microscopy of cells. Morphew MK1, O'Toole ET1, Page CL1, Pagratis M1, Meehl J1, Giddings T1, Gardner JM2, Ackerson C3, Jaspersen SL2, Winey M1, Hoenger A1, McIntosh JR1. J Microsc. 2015 May 13 Centrosomes. Regulated assembly of a supramolecular centrosome scaffold in vitro. Woodruff JB1, Wueseke O1, Viscardi V2, Mahamid J3, Ochoa SD2, Bunkenborg J4, Widlund PO1, Pozniakovsky A1, Zanin E2, Bahmanyar S2, Zinke A1, Hong SH5, Decker M1, Baumeister W3, Andersen JS6, Oegema K7, Hyman AA8. Science. 2015 May 15 http://www.sciencemag.org/content/348/6236/808.long Nek5 promotes centrosome integrity in interphase and loss of centrosome cohesion in mitosis. Prosser SL1, Sahota NK2, Pelletier L3, Morrison CG4, Fry AM5. J Cell Biol. 2015 May 11 http://jcb.rupress.org/content/209/3/339.long Ciliary ectosomes: transmissions from the cell's antenna. Wood CR1, Rosenbaum JL2. Trends Cell Biol. 2015 May http://www.sciencedirect.com/science/article/pii/S0962892414002190 Kinetochore components are required for central spindle assembly.

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Maton G1, Edwards F1, Lacroix B1, Stefanutti M1, Laband K1, Lieury T1, Kim T2, Espeut J3, Canman JC4, Dumont J1. Nat Cell Biol. 2015 May http://www.nature.com/ncb/journal/v17/n5/full/ncb3150.html Quantitative analysis of cytoskeletal reorganization during epithelial tissue sealing by large-volume electron tomography. Eltsov M1, Dubé N2, Yu Z3, Pasakarnis L4, Haselmann-Weiss U5, Brunner D6, Frangakis AS3. Nat Cell Biol. 2015 May http://www.nature.com/ncb/journal/v17/n5/full/ncb3159.html Wdr1-mediated cell shape dynamics and cortical tension are essential for epidermal planar cell polarity. Luxenburg C1, Heller E1, Pasolli HA1, Chai S1, Nikolova M1, Stokes N1, Fuchs E1. Nat Cell Biol. 2015 May http://www.nature.com/ncb/journal/v17/n5/full/ncb3146.html Evolutionary problems in centrosome and centriole biology. Ross L1, Normark BB2. J Evol Biol. 2015 May http://onlinelibrary.wiley.com/doi/10.1111/jeb.12620/abstract;jsessionid=D3177009CBD2F4BEFFCD145FFD0DF884.f02t03 Paternally contributed centrioles exhibit exceptional persistence in C. elegans embryos. Balestra FR1, von Tobel L1, Gönczy P1. Cell Res. 2015 May http://www.nature.com/cr/journal/v25/n5/full/cr201549a.html Hsp70 clears misfolded kinases that partitioned into distinct quality-control compartments. Roy J1, Mitra S1, Sengupta K2, Mandal AK3. Mol Biol Cell. 2015 May 1 http://www.molbiolcell.org/content/26/9/1583.long 4/2015 RC/BTB2 is essential for formation of primary cilia in mammalian cells. Zhang L1,2, Li W2, Ni J3, Wu J2, Liu J1,2, Zhang Z4, Zhang Y2,5, Li H2, Shi Y1, Teves ME2, Song S1, Strauss JF 3rd2, Zhang Z1,2. Cytoskeleton (Hoboken). 2015 Apr http://onlinelibrary.wiley.com/doi/10.1002/cm.21214/abstract Cell Division: Molecular Pathways for KMN Kinetochore Recruitment. Afreen S1, Varma D2. Curr Biol. 2015 Apr 20 http://www.sciencedirect.com/science/article/pii/S0960982215002109 Chromosome structure deficiencies in MCPH1 syndrome. Arroyo M1, Trimborn M, Sánchez A, Hirano T, Neitzel H, Marchal JA. Chromosoma. 2015 Apr 7

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Cilia. 2015 Mar 31 http://www.ciliajournal.com/content/4/1/5 ERK7 regulates ciliogenesis by phosphorylating the actin regulator CapZIP in cooperation with Dishevelled. Miyatake K1, Kusakabe M1, Takahashi C1, Nishida E1. Nat Commun. 2015 Mar 31 http://www.nature.com/ncomms/2015/150331/ncomms7666/full/ncomms7666.html Determination of Mother Centriole Maturation in CPAP-Depleted Cells Using the Ninein Antibody. Lee M1, Rhee K2. Endocrinol Metab (Seoul). 2015 Mar 27 e-enm.org/DOIx.php?id=10.3803/EnM.2015.30.1.53 In vivo investigation of cilia structure and function using Xenopus. Brooks ER1, Wallingford JB2. Methods Cell Biol. 2015 http://www.sciencedirect.com/science/article/pii/S0091679X15000606 Moesin is a major regulator of centrosome behavior in epithelial cells with extra centrosomes. Sabino D1, Gogendeau D1, Gambarotto D1, Nano M1, Pennetier C1, Dingli F2, Arras G2, Loew D2, Basto R3. Curr Biol. 2015 Mar 30 http://www.sciencedirect.com/science/article/pii/S096098221500130X Correlation between primary cilium and Wnt signaling pathway. Manli Z1, Yanping L1, Yali L1. Yi Chuan. 2015 Mar The polarity protein Baz forms a platform for the centrosome orientation during asymmetric stem cell division in the Drosophila male germline. Inaba M1, Venkei ZG1, Yamashita YM1. Elife. 2015 Mar 20 http://elifesciences.org/content/4/e04960 Somatic CRISPR-Cas9-induced mutations reveal roles of embryonically essential dynein chains in Caenorhabditis elegans cilia. Li W1, Yi P1, Ou G2. J Cell Biol. 2015 Mar 16 jcb.rupress.org/cgi/pmidlookup?view=long&pmid=25778918 Centrin2 regulates CP110 removal in primary cilium formation. Prosser SL1, Morrison CG2. J Cell Biol. 2015 Mar 16 http://jcb.rupress.org/content/208/6/693.long A novel bipartite centrosome coordinates the apicomplexan cell cycle. Suvorova ES1, Francia M2, Striepen B2, White MW1. PLoS Biol. 2015 Mar 3 http://journals.plos.org/plosbiology/article?id=10.1371/journal.pbio.1002093

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Centrosome maturation requires YB-1 to regulate dynamic instability of microtubules for nucleus reassembly. Kawaguchi A1, Asaka MN1, Matsumoto K2, Nagata K1. Sci Rep. 2015 Mar http://www.nature.com/srep/2015/150305/srep08768/full/srep08768.html Kif2a depletion generates chromosome segregation and pole coalescence defects in animal caps and inhibits gastrulation of the Xenopus embryo. Eagleson G1, Pfister K2, Knowlton AL1, Skoglund P2, Keller R2, Stukenberg PT3. Mol Biol Cell. 2015 Mar 1 http://www.molbiolcell.org/content/26/5/924.abstract?etoc Insights into the cellular mechanism of the yeast ubiquitin ligase APC/C-Cdh1 from the analysis of in vivo degrons. Arnold L1, Höckner S1, Seufert W2. Mol Biol Cell. 2015 Mar 1 http://www.molbiolcell.org/content/26/5/843.abstract?etoc Early steps in primary cilium assembly require EHD1/EHD3-dependent ciliary vesicle formation. Lu Q1, Insinna C1, Ott C2, Stauffer J1, Pintado PA3, Rahajeng J4, Baxa U5, Walia V1, Cuenca A1, Hwang YS1, Daar IO1, Lopes S5, Lippincott-Schwartz J2, Jackson PK6, Caplan S4, Westlake CJ1. Nat Cell Biol. 2015 Mar http://www.nature.com/ncb/journal/v17/n3/full/ncb3109.html 2/2015 Cryo-electron tomography of motile cilia and flagella. Ishikawa T1. Cilia. 2015 Feb 2 http://www.ciliajournal.com/content/4/1/3 Ultrastructural visualization of trans-ciliary rhodopsin cargoes in mammalian rods. Chuang JZ1, Hsu YC1, Sung CH2. Cilia. 2015 Feb 8 http://www.ciliajournal.com/content/4/1/4 Ciliary heterogeneity within a single cell: the Paramecium model. Aubusson-Fleury A1, Cohen J1, Lemullois M1. Methods Cell Biol. 2015 http://www.sciencedirect.com/science/article/pii/S0091679X14000521 Uni-directional ciliary membrane protein trafficking by a cytoplasmic retrograde IFT motor and ciliary ectosome shedding. Cao M1, Ning J1, Hernandez-Lara CI1, Belzile O1, Wang Q1, Dutcher SK2, Liu Y1, Snell WJ1. Elife. 2015 Feb 17 http://elifesciences.org/content/4/e05242 Membrane Dynamics at the Nuclear Exchange Junction during Early Mating (One to Four Hours) in the Ciliate Tetrahymena thermophila.

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Cole ES1, Giddings TH Jr2, Ozzello C2, Winey M2, O'Toole E3, Orias J4, Hamilton E4, Guerrier S5, Ballard A6, Aronstein T6. Eukaryot Cell. 2015 Feb;14(2):116-27. doi: 10.1128/EC.00164-14. Epub 2014 Aug 8. http://ec.asm.org/content/14/2/116.long Fast protein-depletion system utilizing tetracycline repressible promoter and N-end rule in yeast. Gnanasundram SV1, Koš M1. Mol Biol Cell. 2015 Feb 15 http://www.molbiolcell.org/content/26/4/762.long Neuroanatomical and behavioral deficits in mice haploinsufficient for Pericentriolar material 1 (Pcm1). Zoubovsky S1, Oh EC2, Cash-Padgett T1, Johnson AW3, Hou Z4, Mori S4, Gallagher M3, Katsanis N2, Sawa A1, Jaaro-Peled H5. Neurosci Res. 2015 Feb 16 http://www.sciencedirect.com/science/article/pii/S016801021500036X Plk4-dependent phosphorylation of STIL is required for centriole duplication. Kratz AS1, Bärenz F1, Richter KT1, Hoffmann I2. Biol Open. 2015 Feb 20 http://bio.biologists.org/content/early/2015/02/06/bio.201411023.long Cep68 can be regulated by Nek2 and SCF complex. Man X1, Megraw TL2, Lim YP3. Eur J Cell Biol. 2015 Feb 4 http://www.sciencedirect.com/science/article/pii/S0171933515000138 Cyclin O (Ccno) functions during deuterosome-mediated centriole amplification of multiciliated cells. Funk MC1, Bera AN2, Menchen T3, Kuales G4, Thriene K5, Lienkamp SS2, Dengjel J6, Omran H3, Frank M7, Arnold SJ8. EMBO J. 2015 Feb 23 http://emboj.embopress.org/content/early/2015/02/23/embj.201490805.long IFT46 plays an essential role in cilia development. Lee MS1, Hwang KS1, Oh HW2, Ji-Ae K2, Kim HT1, Cho HS2, Lee JJ2, Yeong Ko J3, Choi JH1, Jeong YM1, You KH1, Kim J4, Park DS2, Nam KH2, Aizawa S5, Kiyonari H5, Shioi G5, Park JH3, Zhou W6, Kim NS7, Kim CH8. Dev Biol. 2015 Feb 24 http://www.sciencedirect.com/science/article/pii/S0012160615000676 Two Polo-like kinase 4 binding domains in Asterless perform distinct roles in regulating kinase stability. Klebba JE1, Galletta BJ2, Nye J1, Plevock KM3, Buster DW1, Hollingsworth NA1, Slep KC4, Rusan NM5, Rogers GC6. J Cell Biol. 2015 Feb 16 http://jcb.rupress.org/content/208/4/401.long Ciliary proteins Bbs8 and Ift20 promote planar cell polarity in the cochlea. May-Simera HL1, Petralia RS2, Montcouquiol M3, Wang YX2, Szarama KB4, Liu Y5, Lin W5, Deans MR6, Pazour GJ7, Kelley MW8. Development. 2015 Feb 1

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Proc Natl Acad Sci U S A. 2015 Feb 3 http://www.pnas.org/content/112/5/1410.long Functional relationship among PLK2, PLK4 and ROCK2 to induce centrosome amplification. Ling H1, Hanashiro K, Luong TH, Benavides L, Fukasawa K. Cell Cycle. 2015 Feb 16 http://www.tandfonline.com/doi/abs/10.4161/15384101.2014.989121?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VPSyZyhLrww JAK2 Tyrosine Kinase Phosphorylates and Is Negatively Regulated by Centrosomal Protein Ninein. Jay J1, Hammer A1, Nestor-Kalinoski A2, Diakonova M3. Mol Cell Biol. 2015 Jan 1 http://mcb.asm.org/content/35/1/111.long Centrin: Another target of monastrol, an inhibitor of mitotic spindle. Duan L1, Wang TQ1, Bian W2, Liu W2, Sun Y3, Yang BS4. Spectrochim Acta A Mol Biomol Spectrosc. 2015 Feb 25 http://www.sciencedirect.com/science/article/pii/S1386142514012414 1/2015 Diagnosis and management of primary ciliary dyskinesia. Werner C1, Onnebrink JG1, Omran H1. Cilia. 2015 Jan 22 http://www.ciliajournal.com/content/4/1/2 A molecular basis for the differential roles of Bub1 and BubR1 in the spindle assembly checkpoint. Overlack K1, Primorac I1, Vleugel M2, Krenn V1, Maffini S1, Hoffmann I1, Kops GJ3, Musacchio A1. Elife. 2015 Jan 22 http://elifesciences.org/content/4/e05269?utm_source=content_alert&utm_medium=email&utm_content=fulltext&utm_campaign=elife-alerts Reliable cell cycle commitment in budding yeast is ensured by signal integration. Liu X1, Wang X1, Yang X1, Liu S2, Jiang L1, Qu Y1, Hu L1, Ouyang Q1, Tang C1. Elife. 2015 Jan 14 http://elifesciences.org/content/4/e03977?utm_source=content_alert&utm_medium=email&utm_content=fulltext&utm_campaign=elife-alerts Three-Dimensional Architecture of Murine Rod Cilium Revealed by Cryo-EM. Wensel TG1, Gilliam JC. Methods Mol Biol. 2015 http://link.springer.com/protocol/10.1007%2F978-1-4939-2330-4_18 Ciliary ectosomes: transmissions from the cell's antenna. Wood CR1, Rosenbaum JL2. Trends Cell Biol. 2015 Jan 21 http://www.sciencedirect.com/science/article/pii/S0962892414002190

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Solving the centriole disengagement puzzle. Fry AM. Nat Cell Biol. 2015 Jan http://www.nature.com/ncb/journal/v17/n1/full/ncb3087.html The centrosome and its duplication cycle. Fu J, Hagan IM, Glover DM. Cold Spring Harb Perspect Med. 2015 Jan;5(1):a015800. http://cshperspectives.cshlp.org/content/7/2/a015800.abstract Centrobin-mediated regulation of CPAP level limits centriole length during elongation stage. Gudi R1, Haycraft CJ2, Bell PD2, Li Z2, Vasu C2. J Biol Chem. 2015 Jan 23 http://www.jbc.org/content/early/2015/01/23/jbc.M114.603423.long The centrosomal component CEP161 of Dictyostelium discoideum interacts with the Hippo signaling pathwayx. Sukumaran SK1, Blau-Wasser R, Rohlfs M, Gallinger C, Schleicher M, Noegel AA. Cell Cycle. 2015 Jan 21 http://www.tandfonline.com/doi/abs/10.1080/15384101.2015.1007015?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VPSztihLrww Situs inversus and ciliary abnormalities: 20 years later, what is the connection? Pennekamp P1, Menchen T1, Dworniczak B2, Hamada H3. Cilia. 2015 Jan 14 http://www.ciliajournal.com/content/4/1/1 Centrosomal nucleolin is required for microtubule network organization. Xavier G1, Anne-Marie T, Iva U, Fabien M, Karine M, Bouvet P. Cell Cycle. 2015 Jan 15:0 http://www.tandfonline.com/doi/abs/10.1080/15384101.2014.1000197?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VPSy1yhLrww The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes. Waters AM1, Asfahani R2, Carroll P3, Bicknell L3, Lescai F2, Bright A4, Chanudet E2, Brooks A2, Christou-Savina S2, Osman G2, Walsh P2, Bacchelli C2, Chapgier A2, Vernay B2, Bader DM5, Deshpande C6, O' Sullivan M2, Ocaka L2, Stanescu H7, Stewart HS8, Hildebrandt F9, Otto E10, Johnson CA11, Szymanska K11, Katsanis N12, Davis E12, Kleta R7, Hubank M2, Doxsey S4, Jackson A13, Stupka E2, Winey M14, Beales PL2. J Med Genet. 2015 Jan 6. http://jmg.bmj.com/content/early/2015/01/06/jmedgenet-2014-102691.long Aurora kinases phosphorylate lgl to induce mitotic spindle orientation in Drosophila epithelia. Bell GP1, Fletcher GC1, Brain R1, Thompson BJ2. Curr Biol. 2015 Jan 5 http://www.cell.com/current-biology/abstract/S0960-9822(14)01361-X?elsca1=etoc&elsca2=email&elsca3=0960-9822_20150105_25_1_&elsca4=Cell%20Press Aurora A Triggers Lgl Cortical Release during Symmetric Division to Control Planar Spindle Orientation.

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Carvalho CA1, Moreira S1, Ventura G1, Sunkel CE2, Morais-de-Sá E3. Curr Biol. 2015 Jan 5 http://www.cell.com/current-biology/abstract/S0960-9822(14)01362-1?elsca1=etoc&elsca2=email&elsca3=0960-9822_20150105_25_1_&elsca4=Cell%20Press Epithelial cell division: aurora kicks lgl to the cytoplasmic curb. Nakajima Y1, Gibson MC2. Curr Biol. 2015 Jan 5 http://www.cell.com/current-biology/abstract/S0960-9822(14)01546-2?elsca1=etoc&elsca2=email&elsca3=0960-9822_20150105_25_1_&elsca4=Cell%20Press Identification of Cdk targets that control cytokinesis. Kuilman T1, Maiolica A2, Godfrey M3, Scheidel N3, Aebersold R4, Uhlmann F1. EMBO J. 2015 Jan 2 http://emboj.embopress.org/content/34/1/81.long Degradation of Cep68 and PCNT cleavage mediate Cep215 removal from the PCM to allow centriole separation, disengagement and licensing. Pagan JK1, Marzio A1, Jones MJ2, Saraf A3, Jallepalli PV2, Florens L3, Washburn MP4, Pagano M5. Nat Cell Biol. 2015 Jan http://www.nature.com/ncb/journal/v17/n1/full/ncb3076.html The centrosome orientation checkpoint is germline stem cell specific and operates prior to the spindle assembly checkpoint in Drosophila testis. Venkei ZG1, Yamashita YM2. Development. 2015 Jan 1 http://dev.biologists.org/content/142/1/62.long RBM14 prevents assembly of centriolar protein complexes and maintains mitotic spindle integrity. Shiratsuchi G1, Takaoka K2, Ashikawa T1, Hamada H2, Kitagawa D3. EMBO J. 2015 Jan 2 http://emboj.embopress.org/content/34/1/97.long MAP4-Dependent Regulation of Microtubule Formation Affects Centrosome, Cilia, and Golgi Architecture as a Central Mechanism in Growth Regulation. Zahnleiter D1, Hauer NN, Kessler K, Uebe S, Sugano Y, Neuhauss SC, Giessl A, Ekici AB, Blessing H, Sticht H, Dörr HG, Reis A, Thiel CT. Hum Mutat. 2015 Jan http://onlinelibrary.wiley.com/doi/10.1002/humu.22711/abstract;jsessionid=5D08D0E8894F31D63E85F0AD9154AB61.f01t01 Centriolar satellites: key mediators of centrosome functions. Tollenaere MA1, Mailand N, Bekker-Jensen S. Cell Mol Life Sci. 2015 Jan http://link.springer.com/article/10.1007%2Fs00018-014-1711-3 12/2014 Mechanical design principles of a mitotic spindle. Ward JJ1, Roque H1, Antony C1, Nédélec F1.

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Elife. 2014 Dec 18 http://elifesciences.org/content/3/e03398 Enhanced homology-directed human genome engineering by controlled timing of CRISPR/Cas9 delivery. Lin S1, Staahl BT1, Alla RK2, Doudna JA1. Elife. 2014 Dec 15 http://elifesciences.org/content/3/e04766 Cullin 4A and 4B ubiquitin ligases interact with γ-tubulin and induce its polyubiquitination. Thirunavukarasou A1, Govindarajalu G, Singh P, Bandi V, Muthu K, Baluchamy S. Mol Cell Biochem. 2014 Dec 27 http://link.springer.com/article/10.1007%2Fs11010-014-2309-7 Targeting of γ-tubulin complexes to microtubule organizing centers: conservation and divergence. Lin TC1, Neuner A2, Schiebel E3. Trends Cell Biol. 2014 Dec 24 http://www.sciencedirect.com/science/article/pii/S0962892414002128 Quantitative immunofluorescence assay to measure the variation in protein levels at centrosomes. Majumder S1, Fisk HA2. J Vis Exp. 2014 Dec 20 http://www.jove.com/video/52030/quantitative-immunofluorescence-assay-to-measure-variation-protein DisAp-dependent striated fiber elongation is required to organize ciliary arrays. Galati DF1, Bonney S1, Kronenberg Z2, Clarissa C3, Yandell M2, Elde NC2, Jerka-Dziadosz M4, Giddings TH3, Frankel J5, Pearson CG6. J Cell Biol. 2014 Dec 22 http://jcb.rupress.org/lookup/pmid?view=long&pmid=25533842 Solving the centriole disengagement puzzle. Fry AM1. Nat Cell Biol. 2014 Dec 23;17(1):3-5. doi: 10.1038/ncb3087. http://www.nature.com/ncb/journal/v17/n1/full/ncb3087.html The nphp-2 and arl-13 Genetic Modules Interact to Regulate Ciliogenesis and Ciliary Microtubule Patterning in C. elegans. Warburton-Pitt SR1, Silva M1, Nguyen KC2, Hall DH2, Barr MM1. PLoS Genet. 2014 Dec 11 http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1004866 Mutations in CCDC11, Which Encodes a Coiled-coil Containing Ciliary Protein, Causes situs inversus Due to Dysmotility of Monocilia in the Left-Right Organizer. Narasimhan V1, Hjeij R, Vij S, Loges NT, Wallmeier J, Koerner-Rettberg C, Werner C, Thamilselvam SK, Boey A, Choksi S, Pennekamp P, Roy S, Omran H. Humhttp://onlinelibrary.wiley.com/doi/10.1002/humu.22738/abstract Mutat. 2014 Dec 11 Katanin p80 Regulates Human Cortical Development by Limiting Centriole and Cilia Number.

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Hu WF1, Pomp O2, Ben-Omran T3, Kodani A4, Henke K5, Mochida GH6, Yu TW7, Woodworth MB8, Bonnard C2, Raj GS2, Tan TT2, Hamamy H9, Masri A10, Shboul M2, Al Saffar M11, Partlow JN12, Al-Dosari M13, Alazami A14, Alowain M15, Alkuraya FS16, Reiter JF4, Harris MP17, Reversade B18, Walsh CA19. Neuron. 2014 Dec 17 http://www.sciencedirect.com/science/article/pii/S0896627314010988 Pregnenolone Functions in Centriole Cohesion during Mitosis. Hamasaki M1, Matsumura S1, Satou A2, Takahashi C2, Oda Y1, Higashiura C1, Ishihama Y2, Toyoshima F3. Chem Biol. 2014 Dec 18 http://www.sciencedirect.com/science/article/pii/S1074552114004128 BRCA1 and FancJ cooperatively promote interstrand crosslinker induced centrosome amplification through the activation of polo-like kinase 1. Zou J1, Zhang D, Qin G, Chen X, Wang H, Zhang D. Cell Cycle. 2014 Dec 1 http://www.tandfonline.com/doi/abs/10.4161/15384101.2014.964973?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VLWEZChLrww CentrinFish Permit the Visualization of Centrosome Dynamics in a Cellular Context In Vivo. Engerer P1, Yoshimatsu T, Suzuki SC, Godinho L. Zebrafish. 2014 Dec http://online.liebertpub.com/doi/abs/10.1089/zeb.2014.1503 Reverse Genetic Screening Reveals Poor Correlation between Morpholino-Induced and Mutant Phenotypes in Zebrafish. Kok FO1, Shin M1, Ni CW1, Gupta A1, Grosse AS1, van Impel A2, Kirchmaier BC2, Peterson-Maduro J2, Kourkoulis G1, Male I1, DeSantis DF1, Sheppard-Tindell S1, Ebarasi L3, Betsholtz C3, Schulte-Merker S4, Wolfe SA5, Lawson ND6. Dev Cell. 2014 Dec 17 http://www.sciencedirect.com/science/article/pii/S1534580714007357 Ciliopathy proteins establish a bipartite signaling compartment in a C. elegans thermosensory neuron. Nguyen PA1, Liou W2, Hall DH3, Leroux MR4. J Cell Sci. 2014 Dec 15 http://jcs.biologists.org/content/127/24/5317.long Microcephaly. Woods CG1, Basto R2. Curr Biol. 2014 Dec 1 http://www.sciencedirect.com/science/article/pii/S0960982214012263 Expression of polycystins and fibrocystin on primary cilia of lung cells. Hu Q1, Wu Y, Tang J, Zheng W, Wang Q, Nahirney D, Duszyk M, Wang S, Tu JC, Chen XZ. Biochem Cell Biol. 2014 Dec http://www.nrcresearchpress.com/doi/abs/10.1139/bcb-2014-0062?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed Mutations in PLK4, encoding a master regulator of centriole biogenesis, cause microcephaly, growth failure and retinopathy.

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Martin CA1, Ahmad I2, Klingseisen A1, Hussain MS3, Bicknell LS1, Leitch A1, Nürnberg G4, Toliat MR4, Murray JE1, Hunt D1, Khan F5, Ali Z5, Tinschert S6, Ding J1, Keith C7, Harley ME1, Heyn P1, Müller R8, Hoffmann I9, Daire VC10, Dollfus H11, Dupuis L12, Bashamboo A13, McElreavey K13, Kariminejad A14, Mendoza-Londono R12, Moore AT15, Saggar A16, Schlechter C17, Weleber R17, Thiele H4, Altmüller J18, Höhne W4, Hurles ME19, Noegel AA20, Baig SM5, Nürnberg P21, Jackson AP1. Nat Genet. 2014 Dec http://www.nature.com/ng/journal/v46/n12/full/ng.3122.html Binding to Cep164, but not EB1, is essential for centriolar localization of TTBK2 and its function in ciliogenesis. Oda T1, Chiba S, Nagai T, Mizuno K. Genes Cells. 2014 Dec http://onlinelibrary.wiley.com/doi/10.1111/gtc.12191/abstract Centriole amplification by mother and daughter centrioles differs in multiciliated cells. Al Jord A1, Lemaître AI1, Delgehyr N1, Faucourt M1, Spassky N2, Meunier A2. Nature. 2014 Dec 4 http://www.nature.com/nature/journal/v516/n7529/full/nature13770.html Mutation in PLK4, encoding a master regulator of centriole formation, defines a novel locus for primordial dwarfism. Shaheen R1, Al Tala S2, Almoisheer A1, Alkuraya FS3. J Med Genet. 2014 Dec http://jmg.bmj.com/content/51/12/814.long 11/2014 Microtubules stabilize cell polarity by localizing rear signals. Zhang J1, Guo WH1, Wang YL2. Proc Natl Acad Sci U S A. 2014 Nov 18 http://www.pnas.org/content/111/46/16383.abstract.html?etoc The mitotic checkpoint complex binds a second CDC20 to inhibit active APC/C. Izawa D1, Pines J1. Nature. 2014 Nov 12 http://www.nature.com/nature/journal/vaop/ncurrent/full/nature13911.html The Intraflagellar Transport Protein IFT27 Promotes BBSome Exit from Cilia through the GTPase ARL6/BBS3. Liew GM1, Ye F2, Nager AR2, Murphy JP3, Lee JS2, Aguiar M3, Breslow DK2, Gygi SP3, Nachury MV4. Dev Cell. 2014 Nov 10 http://www.sciencedirect.com/science/article/pii/S1534580714005905 IFT27 Links the BBSome to IFT for Maintenance of the Ciliary Signaling Compartment. Eguether T1, San Agustin JT1, Keady BT1, Jonassen JA2, Liang Y3, Francis R4, Tobita K4, Johnson CA5, Abdelhamed ZA5, Lo CW4, Pazour GJ6. Dev Cell. 2014 Nov 10 http://www.sciencedirect.com/science/article/pii/S1534580714006170

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Identification of a Cell Cycle-Dependent Duplicating Complex that Assembles Basal Bodies de novo in Naegleria. Lee J1, Kang S1, Choi YS1, Kim HK1, Yeo CY2, Lee Y3, Roth J3, Lee J4. Protist. 2014 Nov 29 http://www.sciencedirect.com/science/article/pii/S1434461014001175 GCP-WD Mediates γ-TuRC Recruitment and the Geometry of Microtubule Nucleation in Interphase Arrays of Arabidopsis. Walia A1, Nakamura M1, Moss D1, Kirik V2, Hashimoto T3, Ehrhardt DW4. Curr Biol. 2014 Nov 3 http://www.sciencedirect.com/science/article/pii/S0960982214011336 A migrating ciliary gate compartmentalizes the site of axoneme assembly in Drosophila spermatids. Basiri ML1, Ha A1, Chadha A2, Clark NM1, Polyanovsky A3, Cook B2, Avidor-Reiss T4. Curr Biol. 2014 Nov 17 http://www.sciencedirect.com/science/article/pii/S096098221401210X NR5A1 prevents centriole splitting by inhibiting centrosomal DNA-PK activation and ß-catenin accumulation. Wang CY, Lai PY, Chen TY, Chung BC. Cell Commun Signal. 2014 Nov 25 http://www.biosignaling.com/content/12/1/55 Mutations in C2CD3 cause oral-facial-digital syndrome through deregulation of centriole length. Ooi J1. Clin Genet. 2014 Nov 25 http://doi.wiley.com/10.1111/cge.12545 Dynein light intermediate chains maintain spindle bipolarity by functioning in centriole cohesion. Jones LA1, Villemant C1, Starborg T1, Salter A1, Goddard G1, Ruane P1, Woodman PG1, Papalopulu N1, Woolner S2, Allan VJ2. J Cell Biol. 2014 Nov 24 http://jcb.rupress.org/content/207/4/499.long MiCroKiTS 4.0: a database of midbody, centrosome, kinetochore, telomere and spindle. Huang Z1, Ma L1, Wang Y1, Pan Z1, Ren J2, Liu Z3, Xue Y4. Nucleic Acids Res. 2014 Nov 11 http://nar.oxfordjournals.org/content/early/2014/11/11/nar.gku1125.long RanBP1 Governs Spindle Assembly by Defining Mitotic Ran-GTP Production. Zhang MS1, Arnaoutov A1, Dasso M2. Dev Cell. 2014 Nov 24 http://www.sciencedirect.com/science/article/pii/S1534580714006807 Remodeling Cildb, a popular database for cilia and links for ciliopathies. Arnaiz O1, Cohen J1, Tassin AM1, Koll F1. Cilia. 2014 Nov 17 http://www.ciliajournal.com/content/3/1/9 SAS-1 is a C2 domain protein critical for centriole integrity in C. elegans.

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von Tobel L1, Mikeladze-Dvali T1, Delattre M1, Balestra FR1, Blanchoud S1, Finger S2, Knott G3, Müller-Reichert T4, Gönczy P1. PLoS Genet. 2014 Nov 20 http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1004777 Centrosome dynamics as a source of chromosomal instability. Nam HJ1, Naylor RM2, van Deursen JM3. Trends Cell Biol. 2014 Nov 7 http://www.sciencedirect.com/science/article/pii/S0962892414001780 Characterization of a DNA exit gate in the human cohesin ring. Huis in 't Veld PJ1, Herzog F2, Ladurner R1, Davidson IF1, Piric S1, Kreidl E1, Bhaskara V1, Aebersold R3, Peters JM4. Science. 2014 Nov 21 http://www.sciencemag.org/content/346/6212/968.long Closing the cohesin ring: structure and function of its Smc3-kleisin interface. Gligoris TG1, Scheinost JC1, Bürmann F2, Petela N1, Chan KL3, Uluocak P4, Beckouët F1, Gruber S2, Nasmyth K5, Löwe J6. Science. 2014 Nov 21 http://www.sciencemag.org/content/346/6212/963.long Cilia and flagella. A molecular ruler determines the repeat length in eukaryotic cilia and flagella. Oda T1, Yanagisawa H1, Kamiya R2, Kikkawa M3. Science. 2014 Nov 14 http://www.sciencemag.org/content/346/6211/857.long Centriole Duplication: When PLK4 Meets Ana2/STIL. Kim M1, Fong CS2, Bryan Tsou MF3. Curr Biol. 2014 Nov 3 http://www.sciencedirect.com/science/article/pii/S0960982214012755 Cbx2 stably associates with mitotic chromosomes via a PRC2- or PRC1-independent mechanism and is needed for recruiting PRC1 complex to mitotic chromosomes. Zhen CY1, Duc HN1, Kokotovic M1, Phiel CJ2, Ren X3. Mol Biol Cell. 2014 Nov 15 http://www.molbiolcell.org/content/25/23/3726.abstract?etoc Force is a signal that cells cannot ignore. Yusko EC1, Asbury CL2. Mol Biol Cell. 2014 Nov 15 http://www.molbiolcell.org/content/25/23/3717.abstract?etoc Mcph1/Brit1 deficiency promotes genomic instability and tumor formation in a mouse model. Liang Y1, Gao H2, Lin SY3, Goss JA2, Du C4, Li K2. Oncogene. 2014 Nov 3 http://www.nature.com/onc/journal/vaop/ncurrent/full/onc2014367a.html The MST1/2-SAV1 complex of the Hippo pathway promotes ciliogenesis. Kim M1, Kim M1, Lee MS2, Kim CH2, Lim DS1. Nat Commun. 2014 Nov 4

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Tubulin glycylases are required for primary cilia, control of cell proliferation and tumor development in colon. Rocha C1, Papon L2, Cacheux W3, Marques Sousa P4, Lascano V5, Tort O6, Giordano T4, Vacher S3, Lemmers B2, Mariani P3, Meseure D3, Medema JP5, Bièche I3, Hahne M7, Janke C8. EMBO J. 2014 Oct 1 http://emboj.embopress.org/content/33/19/2247.long Lattice light-sheet microscopy: imaging molecules to embryos at high spatiotemporal resolution. Chen BC1, Legant WR1, Wang K1, Shao L1, Milkie DE2, Davidson MW3, Janetopoulos C4, Wu XS5, Hammer JA 3rd5, Liu Z1, English BP1, Mimori-Kiyosue Y6, Romero DP7, Ritter AT8, Lippincott-Schwartz J9, Fritz-Laylin L10, Mullins RD10, Mitchell DM11, Bembenek JN11, Reymann AC12, Böhme R12, Grill SW12, Wang JT13, Seydoux G13, Tulu US14, Kiehart DP14, Betzig E15. Science. 2014 Oct 24 Science. 2014 Oct 24;346(6208):1257998. doi: 10.1126/science.1257998. Epub 2014 Oct 23. Science on the silver screen Caroline Ash Jackson Hole Science Media Awards Boston, MA 17 to 19 September 2014 http://www.sciencemag.org/content/346/6208/432.1.full.pdf Pax6 controls centriole maturation in cortical progenitors through Odf2. Tylkowski MA1, Yang K, Hoyer-Fender S, Stoykova A. Cell Mol Life Sci. 2014 Oct 29 http://link.springer.com/article/10.1007%2Fs00018-014-1766-1 Centrosome/Cell cycle uncoupling and elimination in the endoreduplicating intestinal cells of C. elegans. Lu Y1, Roy R1. PLoS One. 2014 Oct 31 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0110958 A founder CEP120 mutation in Jeune asphyxiating thoracic dystrophy expands the role of centriolar proteins in skeletal ciliopathies. Shaheen R1, Schmidts M2, Faqeih E3, Hashem A4, Lausch E5, Holder I6, Superti-Furga A7; UK10K Consortium, Mitchison HM6, Almoisheer A1, Alamro R1, Alshiddi T1, Alzahrani F1, Beales PL8, Alkuraya FS9. Hum Mol Genet. 2014 Oct 30 http://hmg.oxfordjournals.org/content/early/2014/11/17/hmg.ddu555.long Licensing of yeast centrosome duplication requires phosphoregulation of sfi1. Avena JS1, Burns S2, Yu Z2, Ebmeier CC1, Old WM1, Jaspersen SL3, Winey M1. PLoS Genet. 2014 Oct 23 http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1004666 Direct interaction of Plk4 with STIL ensures formation of a single procentriole per parental centriole. Ohta M1, Ashikawa T1, Nozaki Y1, Kozuka-Hata H2, Goto H3, Inagaki M3, Oyama M2, Kitagawa D1. Nat Commun. 2014 Oct 24 http://www.nature.com/ncomms/2014/141024/ncomms6267/full/ncomms6267.html

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Expression, purification and preliminary crystallographic analysis of the cryptic polo-box domain of Caenorhabditis elegans ZYG-1. Shimanovskaya E1, Dong G1. Acta Crystallogr F Struct Biol Commun. 2014 Oct http://scripts.iucr.org/cgi-bin/paper?S2053230X14016094 Pericentrin: critical for spindle orientation. Luo Y1, Pelletier L2. Curr Biol. 2014 Oct 6 http://www.sciencedirect.com/science/article/pii/S0960982214010756 Flattop regulates basal body docking and positioning in mono- and multiciliated cells. Gegg M1, Böttcher A1, Burtscher I1, Hasenoeder S1, Van Campenhout C2, Aichler M3, Walch A3, Grant SG4, Lickert H1. Elife. 2014 Oct 8 http://elifesciences.org/content/3/e03842 Ciliary Inclusion Disease: Report of a New PCD Variant. Wartchow EP1, Jaffe R, Mierau GW. Pediatr Dev Pathol. 2014 Oct 9 http://www.ncbi.nlm.nih.gov/pubmed/25299134 Sensors at centrosomes reveal determinants of local separase activity. Agircan FG1, Schiebel E1. PLoS Genet. 2014 Oct 9 http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1004672 Chibby promotes ciliary vesicle formation and basal body docking during airway cell differentiation. Burke MC1, Li FQ1, Cyge B2, Arashiro T3, Brechbuhl HM4, Chen X2, Siller SS1, Weiss MA5, O'Connell CB6, Love D2, Westlake CJ5, Reynolds SD4, Kuriyama R3, Takemaru K7. J Cell Biol. 2014 Oct 13 http://jcb.rupress.org/content/207/1/123.long Regulation of microtubule-based transport by MAP4. Semenova I1, Ikeda K2, Resaul K1, Kraikivski P3, Aguiar M4, Gygi S4, Zaliapin I5, Cowan A1, Rodionov V6. Mol Biol Cell. 2014 Oct 15 http://www.molbiolcell.org/content/25/20/3119.long The Caenorhabditis elegans pericentriolar material components SPD-2 and SPD-5 are monomeric in the cytoplasm before incorporation into the PCM matrix. Wueseke O1, Bunkenborg J2, Hein MY3, Zinke A1, Viscardi V4, Woodruff JB1, Oegema K4, Mann M3, Andersen JS5, Hyman AA6. Mol Biol Cell. 2014 Oct 1 http://www.molbiolcell.org/content/25/19/2984.long Cby1 promotes Ahi1 recruitment to a ring-shaped domain at the centriole-cilium interface and facilitates proper cilium formation and function. Lee YL1, Santé J1, Comerci CJ2, Cyge B3, Menezes LF4, Li FQ3, Germino GG4, Moerner WE2, Takemaru K3, Stearns T5. Mol Biol Cell. 2014 Oct 1

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http://www.molbiolcell.org/content/25/19/2919.long A unique set of centrosome proteins requires pericentrin for spindle-pole localization and spindle orientation. Chen CT1, Hehnly H1, Yu Q2, Farkas D2, Zheng G1, Redick SD1, Hung HF1, Samtani R2, Jurczyk A1, Akbarian S3, Wise C4, Jackson A5, Bober M6, Guo Y7, Lo C2, Doxsey S8. Curr Biol. 2014 Oct 6 http://www.sciencedirect.com/science/article/pii/S0960982214010422 9/2014 Primary cilia signaling mediates intraocular pressure sensation. Luo N1, Conwell MD1, Chen X2, Kettenhofen CI3, Westlake CJ3, Cantor LB1, Wells CD4, Weinreb RN5, Corson TW6, Spandau DF7, Joos KM8, Iomini C9, Obukhov AG2, Sun Y10. Proc Natl Acad Sci U S A. 2014 Sep 2 http://www.pnas.org/content/111/35/12871.long Ciliary abnormalities in senescent human fibroblasts impair proliferative capacity. Breslin L1, Prosser SL, Cuffe S, Morrison CG. Cell Cycle. 2014 Sep 1 http://www.tandfonline.com/doi/abs/10.4161/15384101.2015.945868?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VLWERShLrww Centrioles in the mouse: cilia and beyond. Bazzi H1, Anderson KV. Cell Cycle. 2014 Sep 15 http://www.tandfonline.com/doi/abs/10.4161/15384101.2014.954450?url_ver=Z39.88-2003&rfr_id=ori:rid:crossref.org&rfr_dat=cr_pub%3dpubmed#.VLWD_ChLrww Lack of centrioles and primary cilia in STIL(-/-) mouse embryos. David A1, Liu F, Tibelius A, Vulprecht J, Wald D, Rothermel U, Ohana R, Seitel A, Metzger J, Ashery-Padan R, Meinzer HP, Gröne HJ, Izraeli S, Krämer A. Cell Cycle. 2014 Sep 15 http://www.tandfonline.com/doi/abs/10.4161/15384101.2014.946830?url_ver=Z39.88-2003&rfr_id=ori%3Arid%3Acrossref.org&rfr_dat=cr_pub%3Dpubmed&#.VLWDryhLrww Differential expression of centrosome regulators in Her2+ breast cancer cells versus non-tumorigenic MCF10A cells. Lee MY1, Marina M1, King JL2, Saavedra HI1. Cell Div. 2014 Sep 25 http://www.celldiv.com/content/9/1/3 A new tubulin-binding site and pharmacophore for microtubule-destabilizing anticancer drugs. Prota AE1, Bargsten K1, Diaz JF2, Marsh M3, Cuevas C4, Liniger M5, Neuhaus C5, Andreu JM2, Altmann KH5, Steinmetz MO6. Proc Natl Acad Sci U S A. 2014 Sep 23 http://www.pnas.org/content/111/38/13817.long Centriole maturation requires regulated Plk1 activity during two consecutive cell cycles. Kong D1, Farmer V1, Shukla A1, James J1, Gruskin R1, Kiriyama S1, Loncarek J2.

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J Cell Biol. 2014 Sep 29 http://jcb.rupress.org/content/206/7/855.long Talpid3-binding centrosomal protein Cep120 is required for centriole duplication and proliferation of cerebellar granule neuron progenitors. Wu C1, Yang M2, Li J3, Wang C4, Cao T5, Tao K6, Wang B7. PLoS One. 2014 Sep 24 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0107943 Function of the male-gamete-specific fusion protein HAP2 in a seven-sexed ciliate. Cole ES1, Cassidy-Hanley D2, Fricke Pinello J2, Zeng H3, Hsueh M2, Kolbin D2, Ozzello C4, Giddings T Jr4, Winey M4, Clark TG5. Curr Biol. 2014 Sep 22 http://www.sciencedirect.com/science/article/pii/S0960982214009336 Membrane fusion: HAP2 protein on a short leash. Orias E1. Curr Biol. 2014 Sep 22 http://www.sciencedirect.com/science/article/pii/S0960982214009804 Ultrastructural characterization of primary cilia in pathologically characterized human glioblastoma multiforme (GBM) tumors. Moser JJ1, Fritzler MJ1, Rattner JB1. BMC Clin Pathol. 2014 Sep 12 http://www.biomedcentral.com/1472-6890/14/40 Csi1p recruits alp7p/TACC to the spindle pole bodies for bipolar spindle formation. Zheng F1, Li T1, Jin DY2, Syrovatkina V3, Scheffler K4, Tran PT5, Fu C6. Mol Biol Cell. 2014 Sep 15 http://www.molbiolcell.org/content/25/18/2750.long Regulation of spindle pole body assembly and cytokinesis by the centrin-binding protein Sfi1 in fission yeast. Lee IJ1, Wang N2, Hu W3, Schott K2, Bähler J4, Giddings TH Jr5, Pringle JR6, Du LL3, Wu JQ7. Mol Biol Cell. 2014 Sep 15 http://www.molbiolcell.org/content/25/18/2735.long Drosophila pericentrin requires interaction with calmodulin for its function at centrosomes and neuronal basal bodies but not at sperm basal bodies. Galletta BJ1, Guillen RX1, Fagerstrom CJ1, Brownlee CW2, Lerit DA1, Megraw TL3, Rogers GC2, Rusan NM4. Mol Biol Cell. 2014 Sep 15 http://www.molbiolcell.org/content/25/18/2682.long Basal foot MTOC organizes pillar MTs required for coordination of beating cilia. Clare DK1, Magescas J2, Piolot T3, Dumoux M1, Vesque C4, Pichard E2, Dang T2, Duvauchelle B2, Poirier F2, Delacour D2. Nat Commun. 2014 Sep 12 http://www.nature.com/ncomms/2014/140912/ncomms5888/full/ncomms5888.html Genome-wide siRNA screen reveals coupling between mitotic apoptosis and adaptation. Díaz-Martínez LA1, Karamysheva ZN1, Warrington R1, Li B1, Wei S2, Xie XJ3, Roth MG2, Yu H4.

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EMBO J. 2014 Sep 1 http://emboj.embopress.org/content/33/17/1960.long Location, location, and location: compartmentalization of Hedgehog signaling at primary cilia. Pusapati GV1, Rohatgi R1. EMBO J. 2014 Sep 1 http://emboj.embopress.org/content/33/17/1852.long Stop competing, start talking! Fava LL1, Villunger A1. EMBO J. 2014 Sep 1 http://emboj.embopress.org/content/33/17/1849.long FLA8/KIF3B phosphorylation regulates kinesin-II interaction with IFT-B to control IFT entry and turnaround. Liang Y1, Pang Y2, Wu Q1, Hu Z1, Han X1, Xu Y2, Deng H2, Pan J3. Dev Cell. 2014 Sep 8 http://www.sciencedirect.com/science/article/pii/S1534580714004857 Actin is required for IFT regulation in Chlamydomonas reinhardtii. Avasthi P1, Onishi M2, Karpiak J3, Yamamoto R4, Mackinder L5, Jonikas MC5, Sale WS4, Shoichet B3, Pringle JR2, Marshall WF6. Curr Biol. 2014 Sep 8 http://www.sciencedirect.com/science/article/pii/S0960982214009014 Cilia assembly: a role for F-actin in IFT recruitment. Quarmby L1. Curr Biol. 2014 Sep 8 http://www.sciencedirect.com/science/article/pii/S0960982214009063 Centromere licensing: Mis18 is required to Polo-ver. Barnhart-Dailey MC1, Foltz DR2. Curr Biol. 2014 Sep 8 http://www.sciencedirect.com/science/article/pii/S0960982214008525 Stentor coeruleus. Slabodnick MM1, Marshall WF2. Curr Biol. 2014 Sep 8 http://www.sciencedirect.com/science/article/pii/S096098221400760X OFD1 and flotillins are integral components of a ciliary signaling protein complex organized by polycystins in renal epithelia and odontoblasts. Jerman S1, Ward HH2, Lee R1, Lopes CA3, Fry AM3, MacDougall M4, Wandinger-Ness A1. PLoS One. 2014 Sep 2 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0106330 The intraflagellar transport dynein complex of trypanosomes is made of a heterodimer of dynein heavy chains and of light and intermediate chains of distinct functions. Blisnick T1, Buisson J1, Absalon S1, Marie A1, Cayet N2, Bastin P3. Mol Biol Cell. 2014 Sep 1 http://www.molbiolcell.org/content/25/17/2620.long

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Primary cilium: an elaborate structure that blocks cell division? Ke YN1, Yang WX2. Gene. 2014 Sep 1 http://www.sciencedirect.com/science/article/pii/S0378111914007148 8/2014 The Cep192-organized aurora A-Plk1 cascade is essential for centrosome cycle and bipolar spindle assembly. Joukov V1, Walter JC2, De Nicolo A3. Mol Cell. 2014 Aug 21 http://www.cell.com/molecular-cell/abstract/S1097-2765(14)00524-3?elsca1=etoc&elsca2=email&elsca3=1097-2765_20140821_55_4_&elsca4=Cell%20Press Increased microtubule assembly rates influence chromosomal instability in colorectal cancer cells. Ertych N1, Stolz A1, Stenzinger A2, Weichert W3, Kaulfuß S4, Burfeind P4, Aigner A5, Wordeman L6, Bastians H7. Nat Cell Biol. 2014 Aug http://www.nature.com/ncb/journal/v16/n8/full/ncb2994.html?WT.ec_id=NCB-201408 The dynamics of microtubule minus ends in the human mitotic spindle. Lecland N, Lüders J. Nat Cell Biol. 2014 Aug http://www.nature.com/ncb/journal/v16/n8/full/ncb2996.html?WT.ec_id=NCB-201408 A growing role for Aurora A in chromosome instability. Maia AR, van Heesbeen RG, Medema RH. Nat Cell Biol. 2014 Aug 1 http://www.nature.com/ncb/journal/v16/n8/full/ncb3018.html?WT.ec_id=NCB-201408 Sliding filaments and mitotic spindle organization. Wang H, Brust-Mascher I, Scholey JM. Nat Cell Biol. 2014 Aug 1 http://www.nature.com/ncb/journal/v16/n8/full/ncb3019.html?WT.ec_id=NCB-201408 Morphogenesis: A Mob Rules from the Rear. Chalker DL1, Frankel J2. Curr Biol. 2014 Aug 4 http://www.cell.com/current-biology/abstract/S0960-9822(14)00758-1?elsca1=etoc&elsca2=email&elsca3=0960-9822_20140804_24_15_&elsca4=Cell%20Press Molecular basis for unidirectional scaffold switching of human Plk4 in centriole biogenesis. Park SY1, Park JE2, Kim TS2, Kim JH3, Kwak MJ4, Ku B3, Tian L5, Murugan RN6, Ahn M6, Komiya S7, Hojo H8, Kim NH9, Kim BY10, Bang JK6, Erikson RL11, Lee KW12, Kim SJ13, Oh BH14, Yang W5, Lee KS15. Nat Struct Mol Biol. 2014 Aug http://www.nature.com/nsmb/journal/v21/n8/full/nsmb.2846.html

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The oral-facial-digital syndrome gene C2CD3 encodes a positive regulator of centriole elongation. Thauvin-Robinet C1, Lee JS2, Lopez E3, Herranz-Pérez V4, Shida T5, Franco B6, Jego L3, Ye F5, Pasquier L7, Loget P8, Gigot N9, Aral B9, Lopes CA10, St-Onge J9, Bruel AL3, Thevenon J11, González-Granero S4, Alby C12, Munnich A13, Vekemans M13, Huet F11, Fry AM10, Saunier S14, Rivière JB9, Attié-Bitach T13, Garcia-Verdugo JM4, Faivre L11, Mégarbané A15, Nachury MV5. Nat Genet. 2014 Aug http://www.nature.com/ng/journal/v46/n8/full/ng.3031.html Functional characterization of Prickle2 and BBS7 identify overlapping phenotypes yet distinct mechanisms. Mei X1, Westfall TA1, Zhang Q2, Sheffield VC2, Bassuk AG3, Slusarski DC4. Dev Biol. 2014 Aug 15 http://www.sciencedirect.com/science/article/pii/S0012160614002760 The Nuclear Localization of γ-Tubulin Is Regulated by SadB-mediated Phosphorylation. Eklund G1, Lang S1, Glindre J1, Ehlén A1, Alvarado-Kristensson M2. J Biol Chem. 2014 Aug 1 http://www.jbc.org/content/289/31/21360.long Cep126 is required for pericentriolar satellite localisation to the centrosome and for primary cilium formation. Bonavita R1, Walas D, Brown AK, Luini A, Stephens DJ, Colanzi A. Biol Cell. 2014 Aug http://onlinelibrary.wiley.com/doi/10.1111/boc.201300087/abstract 7/2014 The kinesin-4 protein Kif7 regulates mammalian Hedgehog signalling by organizing the cilium tip compartment. He M1, Subramanian R2, Bangs F3, Omelchenko T4, Liem KF Jr5, Kapoor TM2, Anderson KV3. Nat Cell Biol. 2014 Jul http://www.nature.com/ncb/journal/v16/n7/full/ncb2988.html Kif7 keeps cilia tips in shape. Pedersen LB1, Akhmanova A2. Nat Cell Biol. 2014 Jul 1 http://www.nature.com/ncb/journal/v16/n7/full/ncb2997.html A dual role for planar cell polarity genes in ciliated cells. Boutin C1, Labedan P2, Dimidschstein J3, Richard F4, Cremer H4, André P5, Yang Y5, Montcouquiol M6, Goffinet AM1, Tissir F7. Proc Natl Acad Sci U S A. 2014 Jul 29 http://www.pnas.org/content/111/30/E3129.abstract.html?etoc Copy number alteration burden predicts prostate cancer relapse. Hieronymus H1, Schultz N2, Gopalan A3, Carver BS4, Chang MT5, Xiao Y3, Heguy A6, Huberman K7, Bernstein M4, Assel M8, Murali R9, Vickers A8, Scardino PT4, Sander C10, Reuter V3, Taylor BS11, Sawyers CL12. Proc Natl Acad Sci U S A. 2014 Jul 29 http://www.pnas.org/content/111/30/11139.abstract.html?etoc

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Stromal response to Hedgehog signaling restrains pancreatic cancer progression. Lee JJ1, Perera RM2, Wang H3, Wu DC4, Liu XS4, Han S5, Fitamant J2, Jones PD4, Ghanta KS2, Kawano S4, Nagle JM2, Deshpande V2, Boucher Y5, Kato T6, Chen JK6, Willmann JK3, Bardeesy N7, Beachy PA8. Proc Natl Acad Sci U S A. 2014 Jul 29 http://www.pnas.org/content/111/30/E3091.abstract.html?etoc Excess centrosomes disrupt endothelial cell migration via centrosome scattering Erich J. Kushner, Luke S. Ferro, Jie-Yu Liu, Jessica R. Durrant, Stephen L. Rogers, Andrew C. Dudley, and Victoria L. Bautch J. Cell Biol. 2014; Jul 21 2014 http://jcb.rupress.org/content/206/2/257?etoc Force on spindle microtubule minus ends moves chromosomes Mary Williard Elting, Christina L. Hueschen, Dylan B. Udy, and Sophie Dumont J. Cell Biol. 2014; Jul 14 2014 http://jcb.rupress.org/content/206/2/245?etoc Direct kinetochore–spindle pole connections are not required for chromosome segregation Vitali Sikirzhytski, Valentin Magidson, Jonathan B. Steinman, Jie He, Maël Le Berre, Irina Tikhonenko, Jeffrey G. Ault, Bruce F. McEwen, James K. Chen, Haixin Sui, Matthieu Piel, Tarun M. Kapoor, and Alexey Khodjakov J. Cell Biol. 2014; Jul 14 2014 http://jcb.rupress.org/content/206/2/231?etoc Drosophila Pericentrin requires interaction with Calmodulin for its function at centrosomes and neuronal basal bodies, but not at sperm basal bodies. Galletta BJ1, Guillen RX1, Fagerstrom CJ1, Brownlee CW2, Lerit DA1, Megraw TL3, Rogers GC2, Rusan NM4. Mol Biol Cell. 2014 Jul 16 http://www.molbiolcell.org/content/early/2014/07/14/mbc.E13-10-0617.full.pdf+html?with-ds=yes Regulation of spindle-pole body assembly and cytokinesis by the centrin-binding protein Sfi1 in fission yeast. Lee IJ1, Wang N2, Hu W3, Schott K2, Bähler J4, Giddings TH Jr5, Pringle JR6, Du LL3, Wu JQ7. Mol Biol Cell. 2014 Jul 16 http://www.molbiolcell.org/content/early/2014/07/14/mbc.E13-11-0699.full.pdf+html PLK4 overexpression and its effect on centrosome regulation and chromosome stability in human gastric cancer. Shinmura K1, Kurabe N, Goto M, Yamada H, Natsume H, Konno H, Sugimura H. Mol Biol Rep. 2014 Jul 1 http://link.springer.com/article/10.1007%2Fs11033-014-3546-2 Requirement of the spindle pole body for targeting and/or tethering proteins to the inner nuclear membrane. Diaz-Muñoz G1, Harchar TA2, Lai TP3, Shen KF3, Hopper AK1. Nucleus. 2014 Jul 3 https://www.landesbioscience.com/journals/nucleus/article/29793/?nocache=1783195101

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Two miRNA clusters, miR-34b/c and miR-449, are essential for normal brain development, motile ciliogenesis, and spermatogenesis. Wu J1, Bao J2, Kim M3, Yuan S2, Tang C2, Zheng H2, Mastick GS3, Xu C4, Yan W5. Proc Natl Acad Sci U S A. 2014 Jul 15 http://www.pnas.org/content/111/28/E2851.abstract.html?etoc Cep164 triggers ciliogenesis by recruiting Tau tubulin kinase 2 to the mother centriole. Cajánek L1, Nigg EA2. Proc Natl Acad Sci U S A. 2014 Jul 15 http://www.pnas.org/content/111/28/E2841.abstract.html?etoc SAS-6 Assembly Templated by the Lumen of Cartwheel-less Centrioles Precedes Centriole Duplication. Fong CS1, Kim M2, Yang TT3, Liao JC3, Tsou MF4. Dev Cell. 2014 Jul 28 http://www.cell.com/developmental-cell/abstract/S1534-5807(14)00310-4 Disruption of the Basal Body Protein POC1B Results in Autosomal-Recessive Cone-Rod Dystrophy. Roosing S1, Lamers IJ1, de Vrieze E2, van den Born LI3, Lambertus S4, Arts HH1; POC1B Study Group, Peters TA5, Hoyng CB4, Kremer H6, Hetterschijt L7, Letteboer SJ1, van Wijk E5, Roepman R1, den Hollander AI8, Cremers FP9. Am J Hum Genet. 2014 Jul 9 http://www.sciencedirect.com/science/article/pii/S0002929714002742 Assembling the Protein Architecture of the Budding Yeast Kinetochore-Microtubule Attachment using FRET. Aravamudhan P1, Felzer-Kim I2, Gurunathan K3, Joglekar AP4. Curr Biol. 2014 Jul 7 http://www.cell.com/current-biology/abstract/S0960-9822(14)00539-9?elsca1=etoc&elsca2=email&elsca3=0960-9822_20140707_24_13_&elsca4=Cell%20Press Loss of primary cilia occurs early in breast cancer development. Menzl I1, Lebeau L2, Pandey R1, Hassounah NB1, Li FW3, Nagle R4, Weihs K5, McDermott KM6. Cilia. 2014 Jul 1 http://www.ciliajournal.com/content/3/1/7 Molecular Mechanisms that Restrict Yeast Centrosome Duplication to One Event per Cell Cycle. Elserafy M1, Sarić M1, Neuner A1, Lin TC1, Zhang W1, Seybold C1, Sivashanmugam L1, Schiebel E2. Curr Biol. 2014 Jul 7 http://www.cell.com/current-biology/abstract/S0960-9822(14)00597-1?elsca1=etoc&elsca2=email&elsca3=0960-9822_20140707_24_13_&elsca4=Cell%20Press The centriolar protein bld10/cep135 is required to establish centrosome asymmetry in Drosophila neuroblasts. Singh P1, Ramdas Nair A1, Cabernard C2. Curr Biol. 2014 Jul 7 http://www.cell.com/current-biology/abstract/S0960-9822%2814%2900615-0 Chromosomes Rein Back the Spindle Pole Body during Horsetail Movement in Fission Yeast Meiosis.

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Chikashige Y1, Yamane M, Okamasa K, Mori C, Fukuta N, Matsuda A, Haraguchi T, Hiraoka Y. Cell Struct Funct. 2014 Jul 23 https://www.jstage.jst.go.jp/article/csf/39/2/39_14007/_article Polo-like kinases: structural variations lead to multiple functions. Zitouni S1, Nabais C1, Jana SC1, Guerrero A2, Bettencourt-Dias M1. Nat Rev Mol Cell Biol. 2014 Jul http://www.nature.com/nrm/journal/v15/n7/full/nrm3819.html Clathrin regulates centrosome positioning by promoting acto-myosin cortical tension in C. elegans embryos. Spiró Z1, Thyagarajan K1, De Simone A1, Träger S1, Afshar K1, Gönczy P2. Development. 2014 Jul http://dev.biologists.org/content/141/13/2712.long Choosing sides - asymmetric centriole and basal body assembly. Pearson CG. J Cell Sci. 2014 Jul 1 http://jcs.biologists.org/content/127/13/2803.long Multicilin drives centriole biogenesis via E2f proteins. Ma L1, Quigley I1, Omran H2, Kintner C1. Genes Dev. 2014 Jul 1 http://genesdev.cshlp.org/content/28/13/1461.long Centrosomes are autocatalytic droplets of pericentriolar material organized by centrioles. Zwicker D1, Decker M2, Jaensch S2, Hyman AA2, Jülicher F3. Proc Natl Acad Sci U S A. 2014 Jul 1 http://www.pnas.org/content/111/26/E2636.full.pdf+html Multicilin drives centriole biogenesis via E2f proteins. Ma L1, Quigley I1, Omran H2, Kintner C1. Genes Dev. 2014 Jul 1 http://genesdev.cshlp.org/content/28/13/1461.long The 14-3-3 protein Bmh1 functions in the spindle position checkpoint by breaking Bfa1 asymmetry at yeast centrosomes. Caydasi AK1, Micoogullari Y1, Kurtulmus B1, Palani S1, Pereira G2. Mol Biol Cell. 2014 Jul 15 http://www.molbiolcell.org/content/25/14/2143.long Ccdc13 is a novel human centriolar satellite protein required for ciliogenesis and genome stability. Staples CJ1, Myers KN1, Beveridge RD1, Patil AA1, Howard AE1, Barone G1, Lee AJ2, Swanton C2, Howell M3, Maslen S4, Skehel JM4, Boulton SJ5, Collis SJ6. J Cell Sci. 2014 Jul 1 http://jcs.biologists.org/content/127/13/2910.long

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Primary cilia in stem cells and neural progenitors are regulated by neutral sphingomyelinase 2 and ceramide. He Q1, Wang G1, Wakade S1, Dasgupta S1, Dinkins M1, Kong JN1, Spassieva SD2, Bieberich E3. Mol Biol Cell. 2014 Jun http://www.molbiolcell.org/content/25/11/1715.long Identification of conserved, centrosome-targeting ASH domains in TRAPPII complex subunits and TRAPPC8. Schou KB1, Morthorst SK2, Christensen ST2, Pedersen LB2. Cilia. 2014 Jun 18 http://www.ciliajournal.com/content/3/1/6 Structure of the C. elegans ZYG-1 Cryptic Polo Box Suggests a Conserved Mechanism for Centriolar Docking of Plk4 Kinases. Shimanovskaya E1, Viscardi V2, Lesigang J1, Lettman MM2, Qiao R1, Svergun DI3, Round A4, Oegema K5, Dong G6. Structure. 2014 Jun 24 http://www.cell.com/structure/abstract/S0969-2126%2814%2900151-8 The KASH protein Kms2 coordinates mitotic remodeling of the spindle pole body. Wälde S, King MC. J Cell Sci. 2014 Jun 24 http://jcs.biologists.org/content/early/2014/06/22/jcs.154997.long Left-right organizer flow dynamics: how much cilia activity reliably yields laterality? Sampaio P1, Ferreira RR1, Guerrero A2, Pintado P1, Tavares B1, Amaro J1, Smith AA3, Montenegro-Johnson T3, Smith DJ3, Lopes SS4. Dev Cell. 2014 Jun 23 http://www.sciencedirect.com/science/article/pii/S1534580714002779 Identification of conserved, centrosome-targeting ASH domains in TRAPPII complex subunits and TRAPPC8. Schou KB1, Morthorst SK2, Christensen ST2, Pedersen LB2. Cilia. 2014 Jun 18 http://www.ciliajournal.com/content/3/1/6 Novel Recessive Cone-Rod Dystrophy Caused by POC1B Mutation. Durlu YK1, Köroglu C2, Tolun A2. JAMA Ophthalmol. 2014 Jun 19 http://archopht.jamanetwork.com/article.aspx?articleid=1882218 Procentriole assembly without centriole disengagement: a paradox of male gametogenesis. Gottardo M, Callaini G, Riparbelli MG. J Cell Sci. 2014 Jun 17 http://jcs.biologists.org/content/early/2014/06/15/jcs.152843.long Bardet-Biedl syndrome proteins 1 and 3 regulate the ciliary trafficking of polycystic kidney disease 1 protein. Su X1, Driscoll K1, Yao G1, Raed A1, Wu M1, Beales PL2, Zhou J3. Hum Mol Genet. 2014 Jun 16 http://hmg.oxfordjournals.org/content/early/2014/06/24/hmg.ddu267.long

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Ciliopathy-associated gene Cc2d2a promotes assembly of subdistal appendages on the mother centriole during cilia biogenesis. Veleri S1, Manjunath SH1, Fariss RN2, May-Simera H1, Brooks M1, Foskett TA1, Gao C2, Longo TA1, Liu P3, Nagashima K4, Rachel RA1, Li T1, Dong L3, Swaroop A1. Nat Commun. 2014 Jun 20 http://www.nature.com/ncomms/2014/140620/ncomms5207/full/ncomms5207.html A missense mutation in the PISA domain of HsSAS-6 causes autosomal recessive primary microcephaly in a large consanguineous Pakistani family. Khan MA1, Rupp VM2, Orpinell M3, Hussain MS4, Altmüller J5, Steinmetz MO6, Enzinger C7, Thiele H8, Höhne W8, Nürnberg G8, Baig SM9, Ansar M10, Nürnberg P11, Vincent JB12, Speicher MR2, Gönczy P3, Windpassinger C13. Hum Mol Genet. 2014 Jun 20 http://hmg.oxfordjournals.org/content/early/2014/07/04/hmg.ddu318.long NAD+ and SIRT3 control microtubule dynamics and reduce susceptibility to antimicrotubule agents. Harkcom WT1, Ghosh AK1, Sung MS2, Matov A2, Brown KD3, Giannakakou P2, Jaffrey SR4. Proc Natl Acad Sci U S A. 2014 Jun 17 http://www.pnas.org/content/111/24/E2443.long Probing nuclear pore complex architecture with proximity-dependent biotinylation. Kim DI1, Birendra KC1, Zhu W2, Motamedchaboki K2, Doye V3, Roux KJ4. Proc Natl Acad Sci U S A. 2014 Jun 17 http://www.pnas.org/content/111/24/E2453.long Primary cilia control hedgehog signaling during muscle differentiation and are deregulated in rhabdomyosarcoma. Fu W1, Asp P2, Canter B1, Dynlacht BD3. Proc Natl Acad Sci U S A. 2014 Jun 24 http://www.pnas.org/content/111/25/9151.long Α-tubulin K40 acetylation is required for contact inhibition of proliferation and cell-substrate adhesion. Aguilar A1, Becker L2, Tedeschi T3, Heller S2, Iomini C3, Nachury MV4. Mol Biol Cell. 2014 Jun 15 http://www.molbiolcell.org/content/25/12/1854.long Cytoplasmic carboxypeptidase 5 regulates tubulin glutamylation and zebrafish cilia formation and function. Pathak N1, Austin-Tse CA2, Liu Y3, Vasilyev A4, Drummond IA5. Mol Biol Cell. 2014 Jun 15 http://www.molbiolcell.org/content/25/12/1836.long A dynamic microtubule cytoskeleton directs medial actomyosin function during tube formation. Booth AJ1, Blanchard GB2, Adams RJ2, Röper K3. Dev Cell. 2014 Jun 9 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4064686/ Mechanism of cytokinetic contractile ring constriction in fission yeast.

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Stachowiak MR1, Laplante C2, Chin HF1, Guirao B1, Karatekin E3, Pollard TD4, O'Shaughnessy B5. Dev Cell. 2014 Jun 9 http://www.sciencedirect.com/science/article/pii/S153458071400241X Asterless licenses daughter centrioles to duplicate for the first time in Drosophila embryos. Novak ZA1, Conduit PT1, Wainman A2, Raff JW3. Curr Biol. 2014 Jun 2 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4046630/ A centrosomal route for cancer genome instability. de Cárcer G, Malumbres M. Nat Cell Biol. 2014 Jun http://www.nature.com/ncb/journal/v16/n6/full/ncb2978.html Asterless licenses daughter centrioles to duplicate for the first time in Drosophila embryos. Novak ZA1, Conduit PT1, Wainman A2, Raff JW3. Curr Biol. 2014 Jun 2 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4046630/ 5/2014 Genome-wide high-resolution mapping of chromosome fragile sites in Saccharomyces cerevisiae. Song W1, Dominska M1, Greenwell PW1, Petes TD2. Proc Natl Acad Sci U S A. 2014 May 27 http://www.pnas.org/content/111/21/E2210.long "Stop Ne(c)king around": How interactomics contributes to functionally characterize Nek family kinases. Meirelles GV, Perez AM, de Souza EE, Basei FL, Papa PF, Melo Hanchuk TD, Cardoso VB, Kobarg J. World J Biol Chem. 2014 May 26 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4050109/ APC(Cdc20) suppresses apoptosis through targeting Bim for ubiquitination and destruction. Wan L1, Tan M2, Yang J3, Inuzuka H1, Dai X1, Wu T4, Liu J5, Shaik S1, Chen G6, Deng J7, Malumbres M8, Letai A7, Kirschner MW4, Sun Y2, Wei W9. Dev Cell. 2014 May 27 http://www.sciencedirect.com/science/article/pii/S1534580714002421 PP2A delays APC/C-dependent degradation of separase-associated but not free securin. Hellmuth S1, Böttger F2, Pan C3, Mann M3, Stemmann O2. EMBO J. 2014 May 16 http://emboj.embopress.org/content/33/10/1134.long

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High-resolution microtubule structures reveal the structural transitions in αβ-tubulin upon GTP hydrolysis. Alushin GM1, Lander GC2, Kellogg EH3, Zhang R2, Baker D3, Nogales E4. Cell. 2014 May 22 http://www.sciencedirect.com/science/article/pii/S0092867414004838 SKA1 over-expression promotes centriole over-duplication, centrosome amplification and prostate tumourigenesis. Li J1, Xuan JW, Khatamianfar V, Valiyeva F, Moussa M, Sadek A, Yang BB, Dong BJ, Huang YR, Gao WQ. J Pathol. 2014 May 14 http://onlinelibrary.wiley.com/doi/10.1002/path.4374/abstract;jsessionid=E80132EC4E2422B8667EEE25973EAA7C.f03t03 Budding Yeast for Budding Geneticists: A Primer on the Saccharomyces cerevisiae Model System. Duina AA1, Miller ME, Keeney JB. Genetics. 2014 May Characterizing the ultrastructure of primary ciliary dyskinesia transposition defect using electron tomography. Burgoyne T1, Lewis A, Dewar A, Luther P, Hogg C, Shoemark A, Dixon M. Cytoskeleton (Hoboken). 2014 May http://onlinelibrary.wiley.com/doi/10.1002/cm.21171/abstract;jsessionid=20817638F4B739AC84A63D4FA7920FE6.f02t04 Biallelic Variants in TTLL5, Encoding a Tubulin Glutamylase, Cause Retinal Dystrophy. Sergouniotis PI1, Chakarova C2, Murphy C3, Becker M4, Lenassi E1, Arno G2, Lek M5, Macarthur DG5; UCL-Exomes Consortium, Bhattacharya SS2, Moore AT1, Holder GE1, Robson AG1, Wolfrum U4, Webster AR6, Plagnol V3. Am J Hum Genet. 2014 May 1 http://www.sciencedirect.com/science/article/pii/S000292971400175X Inhibition of Polo kinase by BI2536 affects centriole separation during Drosophila male meiosis. Riparbelli MG1, Gottardo M1, Glover DM2, Callaini G1. Cell Cycle. 2014 May 6 https://www.landesbioscience.com/journals/cc/article/29083/ NME7 Is a Functional Component of the γ-Tubulin Ring Complex. Liu P1, Choi YK, Qi RZ. Mol Biol Cell. 2014 May 7 http://www.molbiolcell.org/content/early/2014/05/05/mbc.E13-06-0339.full.pdf+html Mitotic spindle multipolarity without centrosome amplification. Maiato H, Logarinho E. Nat Cell Biol. 2014 May 2 http://www.nature.com/ncb/journal/v16/n5/full/ncb2958.html FAP20 is an inner junction protein of doublet microtubules essential for both the planar asymmetrical waveform and stability of flagella in Chlamydomonas. Yanagisawa HA1, Mathis G, Oda T, Hirono M, Richey EA, Ishikawa H, Marshall WF, Kikkawa M, Qin H.

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Mol Biol Cell. 2014 May http://www.molbiolcell.org/content/25/9/1472.long 4/2014 Cell-cycle dependent phosphorylation of yeast pericentrin regulates γ-TuSC-mediated microtubule nucleation. Lin TC1, Neuner A2, Schlosser YT2, Scharf AN2, Weber L2, Schiebel E3. Elife (Cambridge). 2014 Apr 30 http://elifesciences.org/content/3/e02208 Cyclin B2 and p53 control proper timing of centrosome separation. Nam HJ1, van Deursen JM2. Nat Cell Biol. 2014 Apr 28 http://www.nature.com/ncb/journal/vaop/ncurrent/full/ncb2952.html Centrin 2 is required for mouse olfactory ciliary trafficking and development of ependymal cilia planar polarity. Ying G1, Avasthi P, Irwin M, Gerstner CD, Frederick JM, Lucero MT, Baehr W. J Neurosci. 2014 Apr 30 http://www.jneurosci.org/content/34/18/6377.long Generation of multiciliated cells in functional airway epithelia from human induced pluripotent stem cells. Firth AL1, Dargitz CT, Qualls SJ, Menon T, Wright R, Singer O, Gage FH, Khanna A, Verma IM. Proc Natl Acad Sci U S A. 2014 Apr 29 http://www.pnas.org/content/111/17/E1723.abstract.html?etoc Induction of multiciliated cells from induced pluripotent stem cells. Gomperts BN. Proc Natl Acad Sci U S A. 2014 Apr 29 http://www.pnas.org/content/111/17/6120.extract.html?etoc Mapping the cellular response to small molecules using chemogenomic fitness signatures. Lee AY1, St Onge RP, Proctor MJ, Wallace IM, Nile AH, Spagnuolo PA, Jitkova Y, Gronda M, Wu Y, Kim MK, Cheung-Ong K, Torres NP, Spear ED, Han MK, Schlecht U, Suresh S, Duby G, Heisler LE, Surendra A, Fung E, Urbanus ML, Gebbia M, Lissina E, Miranda M, Chiang JH, Aparicio AM, Zeghouf M, Davis RW, Cherfils J, Boutry M, Kaiser CA, Cummins CL, Trimble WS, Brown GW, Schimmer AD, Bankaitis VA, Nislow C, Bader GD, Giaever G. Science. 2014 Apr 11 http://www.sciencemag.org/content/344/6180/208.long Cell cycle: Cnn as a scaffold for centrosome maturation. Baumann K. Nat Rev Mol Cell Biol. 2014 Apr 23 http://www.nature.com/nrm/journal/v15/n5/full/nrm3800.html Compartments within a compartment: What C. elegans can tell us about ciliary subdomain composition, biogenesis, function, and disease. Blacque OE, Sanders AA. Organogenesis. 2014 Apr 14

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Tuz K1, Bachmann-Gagescu R2, O'Day DR3, Hua K1, Isabella CR3, Phelps IG3, Stolarski AE1, O'Roak BJ4, Dempsey JC3, Lourenco C5, Alswaid A6, Bönnemann CG7, Medne L8, Nampoothiri S9, Stark Z10, Leventer RJ11, Topçu M12, Cansu A13, Jagadeesh S14, Done S15, Ishak GE15, Glass IA16, Shendure J17, Neuhauss SC18, Haldeman-Englert CR19, Doherty D20, Ferland RJ21. Am J Hum Genet. 2014 Jan 2 http://www.sciencedirect.com/science/article/pii/S000292971300534X Human TREX2 components PCID2 and centrin 2, but not ENY2, have distinct functions in protein export and co-localize to the centrosome. Cunningham CN1, Schmidt CA1, Schramm NJ1, Gaylord MR2, Resendes KK3. Exp Cell Res. 2014 Jan http://www.sciencedirect.com/science/article/pii/S0014482713005089 CentrosomeDB: a new generation of the centrosomal proteins database for Human and Drosophila melanogaster. Alves-Cruzeiro JM, Nogales-Cadenas R, Pascual-Montano AD. Nucleic Acids Res. 2014 Jan 1 http://nar.oxfordjournals.org/content/42/D1/D430.long Nup62: A novel regulator of centrosome integrity and function. Borlido J, D'Angelo MA. Cell Cycle. 2014 Jan 1 https://www.landesbioscience.com/journals/cc/article/27299/ The Centrosomal Adaptor TACC3 and the Microtubule Polymerase chTOG Interact via Defined C-terminal Subdomains in an Aurora-A Kinase-independent Manner. Thakur HC, Singh M, Nagel-Steger L, Kremer J, Prumbaum D, Fansa EK, Ezzahoini H, Nouri K, Gremer L, Abts A, Schmitt L, Raunser S, Ahmadian MR, Piekorz RP. J Biol Chem. 2014 Jan 3 http://www.jbc.org/content/289/1/74.long Centrosomal abnormalities characterize human and rodent cystic cholangiocytes and are associated with Cdc25A overexpression. Masyuk TV1, Lee SO2, Radtke BN1, Stroope AJ1, Huang B1, Banales JM3, Masyuk AI1, Splinter PL1, Gradilone SA1, Gajdos GB1, LaRusso NF4 Am J Pathol. 2014 Jan http://www.sciencedirect.com/science/article/pii/S0002944013006780 Cancerous Inhibitor of Protein Phosphatase 2A (CIP2A) Protein Is Involved in Centrosome Separation through the Regulation of NIMA (Never In Mitosis Gene A)-related Kinase 2 (NEK2) Protein Activity. Jeong AL, Lee S, Park JS, Han S, Jang CY, Lim JS, Lee MS, Yang Y. J Biol Chem. 2014 Jan 3 http://www.jbc.org/content/289/1/28.long 12/2013 2013 Runners-Up. Human cloning at last. [No authors listed] Science. 2013 Dec 20 http://www.sciencemag.org/content/342/6165/1436.1.long

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Compartmentalized Calcium Signaling in Cilia Regulates Intraflagellar Transport Peter Collingridge, Colin Brownlee, Glen L. Wheeler Current Biology, Volume 23, Issue 22, November 18, 2013 http://www.cell.com/current-biology/abstract/S0960-9822%2813%2901248-7?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=G3R3K5F The Kinases LF4 and CNK2 Control Ciliary Length by Feedback Regulation of Assembly and Disassembly Rates Laura K. Hilton, Kavisha Gunawardane, Joo Wan Kim, Marianne C. Schwarz, Lynne M. Quarmby Current Biology, Volume 23, Issue 22, November 18, 2013 http://www.sciencedirect.com/science/article/pii/S0960982213011858 Potential of the Synthetic Lethality Principle Sebastian M. B. Nijman1, Stephen H. Friend CANCER http://www.sciencemag.org/content/342/6160/809.summary Presidential address. What's so special about science (and how much should we spend on it?). Press WH. Science. 2013 Nov 15;342(6160):817-22. Cytoplasmic volume modulates spindle size during embryogenesis. Good MC, Vahey MD, Skandarajah A, Fletcher DA, Heald R. Science. 2013 Nov 15 http://www.sciencemag.org/content/342/6160/856.long Changes in cytoplasmic volume are sufficient to drive spindle scaling. Hazel J, Krutkramelis K, Mooney P, Tomschik M, Gerow K, Oakey J, Gatlin JC. Science. 2013 Nov 15 http://www.sciencemag.org/content/342/6160/853.long A biosensor of local kinesin activity reveals roles of PKC and EB1 in KIF17 activation. Espenel C, Acharya BR, Kreitzer G. J Cell Biol. 2013 Nov 11 http://jcb.rupress.org/content/203/3/445 Individual pericentromeres display coordinated motion and stretching in the yeast spindle. Stephens AD, Snider CE, Haase J, Haggerty RA, Vasquez PA, Forest MG, Bloom K. J Cell Biol. 2013 Nov 11 http://jcb.rupress.org/content/203/3/407 Amorphous no more: subdiffraction view of the pericentriolar material architecture. Mennella V, Agard DA, Huang B, Pelletier L. Trends Cell Biol. 2013 Nov 19 http://www.sciencedirect.com/science/article/pii/S0962892413001694 The awesome power of dikaryons for studying flagella and basal bodies in Chlamydomonas reinhardtii.

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Dutcher SK. Cytoskeleton (Hoboken). 2013 Nov 23 http://onlinelibrary.wiley.com/doi/10.1002/cm.21157/abstract RABL6A, a novel RAB-like protein, controls centrosome amplification and chromosome instability in primary fibroblasts. Zhang X, Hagen J, Muniz VP, Smith T, Coombs GS, Eischen CM, Mackie DI, Roman DL, Van Rheeden R, Darbro B, Tompkins VS, Quelle DE. PLoS One. 2013 Nov 25 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0080228 Centrosome dysfunction contributes to chromosome instability, chromoanagenesis, and genome reprograming in cancer. Pihan GA. Front Oncol. 2013 Nov 12 http://www.frontiersin.org/Journal/10.3389/fonc.2013.00277/full CETN1 is a cancer testis antigen with expression in prostate and pancreatic cancers. Kim JJ, Rajagopalan K, Hussain B, Williams BH, Kulkarni P, Mooney SM. Biomark Res. 2013 Jun 13 SIRT2 regulates ciliogenesis and contributes to abnormal centrosome amplification caused by loss of polycystin-1. Zhou X, Fan LX, Li K, Ramchandran R, Calvet JP, Li X. Hum Mol Genet. 2013 Nov 18. http://hmg.oxfordjournals.org/content/early/2013/11/18/hmg.ddt556.long Abnormal centrosome and spindle morphology in a patient with autosomal recessive primary microcephaly type 2 due to compound heterozygous WDR62 gene mutation. Farag HG, Froehler S, Oexle K, Ravindran E, Schindler D, Staab T, Huebner A, Kraemer N, Chen W, Kaindl AM. Orphanet J Rare Dis. 2013 Nov 14 http://www.ojrd.com/content/8/1/178 The central role of centrosomes in translocation of mitochondria and centrosome proteins H. Schatten*, Z.H. Liu**, Y.H Hao**, L.X Lai**, D.Wax**, M. Samuel**, Q.-Y. Sun***, and R.S. Prather** *Dept. of Veterinary Pathobiology, University of Missouri-Columbia, Columbia, MO 65211 **Division of Animal Science, University of Missouri-Columbia, Columbia MO 65211 ***State Key Laboratory of Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100080, P.R. China http://journals.cambridge.org/action/displayFulltext?type=1&fid=326652&jid=MAM&volumeId=11&issueId=S02&aid=326651 On the origin of centrosome amplification and chromosomal instability in cancer. Jeffrey L. Salisbury Mayo Clinic College of Medicine, Rochester, MN 55906 http://journals.cambridge.org/action/displayFulltext?type=1&fid=327336&jid=MAM&volumeId=11&issueId=S02&aid=327335 Estimation of subcellular organelle volume from ultrathin sections through centrioles with a discretized version of the nucleator

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Alexander A. Mironov, Galina V. Beznoussenko and Alexander A. Mironov Jr.* Department of Cell Biology and Oncology, Consorzio “Mario Negri Sud”, Via Nazionale, S. Maria Imbaro, 66030, Italy http://journals.cambridge.org/action/displayFulltext?type=1&fid=326850&jid=MAM&volumeId=11&issueId=S02&aid=326849 Polo-like kinase 4 autodestructs by generating its Slimb-binding phosphodegron. Klebba JE, Buster DW, Nguyen AL, Swatkoski S, Gucek M, Rusan NM, Rogers GC. Curr Biol. 2013 Nov 18 http://www.sciencedirect.com/science/article/pii/S0960982213011354 Regulation of autophosphorylation controls PLK4 self-destruction and centriole number. Cunha-Ferreira I, Bento I, Pimenta-Marques A, Jana SC, Lince-Faria M, Duarte P, Borrego-Pinto J, Gilberto S, Amado T, Brito D, Rodrigues-Martins A, Debski J, Dzhindzhev N, Bettencourt-Dias M. Curr Biol. 2013 Nov 18 http://www.sciencedirect.com/science/article/pii/S0960982213011846 Two appendages homologous between basal bodies and centrioles are formed using distinct Odf2 domains. Tateishi K, Yamazaki Y, Nishida T, Watanabe S, Kunimoto K, Ishikawa H, Tsukita S. J Cell Biol. 2013 Nov 11 http://jcb.rupress.org/content/203/3/417.long Cilium assembly: delivery of tubulin by kinesin-2-powered trains. Scholey JM. Curr Biol. 2013 Nov 4 http://www.sciencedirect.com/science/article/pii/S0960982213011792 10/2013 Autophagy promotes primary ciliogenesis by removing OFD1 from centriolar satellites. Tang Z, Lin MG, Stowe TR, Chen S, Zhu M, Stearns T, Franco B, Zhong Q. Nature. 2013 Oct 10 http://www.nature.com/nature/journal/v502/n7470/full/nature12606.html An in vitro assay for entry into cilia reveals unique properties of the soluble diffusion barrier. Breslow DK, Koslover EF, Seydel F, Spakowitz AJ, Nachury MV. J Cell Biol. 2013 Oct 14 http://jcb.rupress.org/content/203/1/129?etoc Patronin mediates a switch from kinesin-13-dependent poleward flux to anaphase B spindle elongation. Wang H, Brust-Mascher I, Civelekoglu-Scholey G, Scholey JM. J Cell Biol. 2013 Oct 14 http://jcb.rupress.org/content/203/1/35.long Sequestration of CDH1 by MAD2L2 prevents premature APC/C activation prior to anaphase onset. Listovsky T, Sale JE.

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J Cell Biol. 2013 Oct 14 http://jcb.rupress.org/content/203/1/87.long Site-specific basal body duplication in Chlamydomonas. O'Toole ET, Dutcher SK. Cytoskeleton (Hoboken). 2013 Oct 26 http://onlinelibrary.wiley.com/doi/10.1002/cm.21155/abstract;jsessionid=4AFF81BC4F77B20CE134CE1A9FDA7EAC.f03t02 Cilia grow by taking a bite out of the cell. Pierce NW, Nachury MV. Dev Cell. 2013 Oct 28 http://www.sciencedirect.com/science/article/pii/S1534580713006102 Distinct roles for antiparallel microtubule pairing and overlap during early spindle assembly. Nazarova E, O'Toole E, Kaitna S, Francois P, Winey M, Vogel J. Mol Biol Cell. 2013 Oct http://www.molbiolcell.org/content/24/20/3238.long Ste20-like protein kinase SLK (LOSK) regulates microtubule organization by targeting dynactin to the centrosome. Zhapparova ON, Fokin AI, Vorobyeva NE, Bryantseva SA, Nadezhdina ES. Mol Biol Cell. 2013 Oct http://www.molbiolcell.org/content/24/20/3205.long Phospho-H2A and Cohesin Specify Distinct Tension-Regulated Sgo1 Pools at Kinetochores and Inner Centromeres. Liu H, Jia L, Yu H. Curr Biol. 2013 Oct 7 http://www.sciencedirect.com/science/article/pii/S0960982213009391 A 3D Map of the Yeast Kinetochore Reveals the Presence of Core and Accessory Centromere-Specific Histone. Haase J, Mishra PK, Stephens A, Haggerty R, Quammen C, Taylor RM 2nd, Yeh E, Basrai MA, Bloom K. Curr Biol. 2013 Oct 7 http://www.sciencedirect.com/science/article/pii/S096098221300972X Remembrance of cilia past. Hoerner C, Stearns T. Cell. 2013 Oct 10 http://www.sciencedirect.com/science/article/pii/S0092867413011641 Asymmetric inheritance of centrosome-associated primary cilium membrane directs ciliogenesis after cell division. Paridaen JT, Wilsch-Bräuninger M, Huttner WB. Cell. 2013 Oct 10 http://www.sciencedirect.com/science/article/pii/S009286741301091X Pin1 promotes histone H1 dephosphorylation and stabilizes its binding to chromatin. Raghuram N, Strickfaden H, McDonald D, Williams K, Fang H, Mizzen C, Hayes JJ, Th'ng J, Hendzel MJ.

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J Cell Biol. 2013 Oct 14 http://jcb.rupress.org/content/203/1/57.long An in vitro assay for entry into cilia reveals unique properties of the soluble diffusion barrier. Breslow DK, Koslover EF, Seydel F, Spakowitz AJ, Nachury MV. J Cell Biol. 2013 Oct 14 http://jcb.rupress.org/content/203/1/129.long Sequestration of CDH1 by MAD2L2 prevents premature APC/C activation prior to anaphase onset. Listovsky T, Sale JE. J Cell Biol. 2013 Oct 14 http://jcb.rupress.org/content/203/1/87.long APC2 and Axin promote mitotic fidelity by facilitating centrosome separation and cytoskeletal regulation. Poulton JS, Mu FW, Roberts DM, Peifer M. Development. 2013 Oct http://dev.biologists.org/content/140/20/4226.long Distinct modes of centromere protein dynamics during cell cycle progression in Drosophila S2R+ cells. Lidsky PV, Sprenger F, Lehner CF. J Cell Sci. 2013 Oct 15 http://jcs.biologists.org/content/126/20/4782.long Phosphorylation of the Smo tail is controlled by membrane localisation and is dispensable for clustering. Kupinski AP, Raabe I, Michel M, Ail D, Brusch L, Weidemann T, Bökel C. J Cell Sci. 2013 Oct 15 http://jcs.biologists.org/content/126/20/4684.long The novel PAR-1-binding protein MTCL1 has crucial roles in organizing microtubules in polarizing epithelial cells. Sato Y, Akitsu M, Amano Y, Yamashita K, Ide M, Shimada K, Yamashita A, Hirano H, Arakawa N, Maki T, Hayashi I, Ohno S, Suzuki A. J Cell Sci. 2013 Oct 15 http://jcs.biologists.org/content/126/20/4671.long Striated rootlet and nonfilamentous forms of rootletin maintain ciliary function. Mohan S, Timbers TA, Kennedy J, Blacque OE, Leroux MR. Curr Biol. 2013 Oct 21 http://www.sciencedirect.com/science/article/pii/S0960982213010397 Fodrin in centrosomes: implication of a role of fodrin in the transport of gamma-tubulin complex in brain. Shashikala S, Kumar R, Thomas NE, Sivadasan D, James J, Sengupta S. PLoS One. 2013 Oct 1;8 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0076613 The cilium like region of the Drosophila spermatocyte: an oncoming flagellum? Gottardo M, Callaini G, Riparbelli MG.

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J Cell Sci. 2013 Oct 8 http://jcs.biologists.org/content/early/2013/10/08/jcs.136523.long Nucleoporin Nup62 maintains centrosome homeostasis. Hashizume C, Moyori A, Kobayashi A, Yamakoshi N, Endo A, Wong RW. Cell Cycle. 2013 Oct 7 https://www.landesbioscience.com/journals/cc/article/26671/ Autophagy promotes primary ciliogenesis by removing OFD1 from centriolar satellites. Tang Z, Lin MG, Stowe TR, Chen S, Zhu M, Stearns T, Franco B, Zhong Q. Nature. 2013 Oct 10 http://www.nature.com/nature/journal/v502/n7470/full/nature12606.html Functional interaction between autophagy and ciliogenesis. Pampliega O, Orhon I, Patel B, Sridhar S, Díaz-Carretero A, Beau I, Codogno P, Satir BH, Satir P, Cuervo AM. Nature. 2013 Oct 10 http://www.nature.com/nature/journal/v502/n7470/full/nature12639.html Cyclin A regulates kinetochore microtubules to promote faithful chromosome segregation. Kabeche L, Compton DA. Nature. 2013 Oct 3 ://www.nature.com/nature/journal/v502/n7469/full/nature12507.html Deuterosome-mediated centriole biogenesis. Klos Dehring DA, Vladar EK, Werner ME, Mitchell JW, Hwang P, Mitchell BJ. Dev Cell. 2013 Oct 14 http://www.sciencedirect.com/science/article/pii/S153458071300508X Functional replacement of fission yeast γ-tubulin small complex proteins Alp4 and Alp6 by human GCP2 and GCP3. Riehlman TD, Olmsted ZT, Branca CN, Winnie AM, Seo L, Cruz LO, Paluh JL. J Cell Sci. 2013 Oct 1 http://jcs.biologists.org/content/126/19/4406.long Nuclear PP2A-Cdc55 prevents APC-Cdc20 activation during the spindle assembly checkpoint. Rossio V, Michimoto T, Sasaki T, Ohbayashi I, Kikuchi Y, Yoshida S. J Cell Sci. 2013 Oct 1 http://jcs.biologists.org/content/126/19/4396.long Cell- and subunit-specific mechanisms of CNG channel ciliary trafficking and localization in C. elegans. Wojtyniak M, Brear AG, O'Halloran DM, Sengupta P. J Cell Sci. 2013 Oct 1 http://jcs.biologists.org/content/126/19/4381.long Furry promotes acetylation of microtubules in the mitotic spindle by inhibition of SIRT2 tubulin deacetylase. Nagai T, Ikeda M, Chiba S, Kanno S, Mizuno K. J Cell Sci. 2013 Oct 1 http://jcs.biologists.org/content/126/19/4369.long

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Kamisetty H, Ovchinnikov S, Baker D. Proc Natl Acad Sci U S A. 2013 Sep 24 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3785744/ Adaptation to the spindle checkpoint is regulated by the interplay between Cdc28/Clbs and PP2ACdc55. Vernieri C, Chiroli E, Francia V, Gross F, Ciliberto A. J Cell Biol. 2013 Sep 2 http://jcb.rupress.org/content/202/5/765.long Spindle assembly checkpoint proteins are positioned close to core microtubule attachment sites at kinetochores. Varma D, Wan X, Cheerambathur D, Gassmann R, Suzuki A, Lawrimore J, Desai A, Salmon ED. J Cell Biol. 2013 Sep 2 http://jcb.rupress.org/content/202/5/735.long Genome-wide haploinsufficiency screen reveals a novel role for γ-TuSC in spindle organization and genome stability. Choy JS, O'Toole E, Schuster BM, Crisp MJ, Karpova TS, McNally JG, Winey M, Gardner MK, Basrai MA. Mol Biol Cell. 2013 Sep http://www.molbiolcell.org/content/24/17/2753.long The Drosophila Selectin Furrowed Mediates Intercellular Planar Cell Polarity Interactions via Frizzled Stabilization. Chin ML, Mlodzik M. Dev Cell. 2013 Sep 16 http://www.sciencedirect.com/science/article/pii/S1534580713004140 Abnormal centrosomal structure and duplication in Cep135-deficient vertebrate cells. Inanç B, Pütz M, Lalor P, Dockery P, Kuriyama R, Gergely F, Morrison CG. Mol Biol Cell. 2013 Sep http://www.molbiolcell.org/content/24/17/2645.long Yeast haspin kinase regulates polarity cues necessary for mitotic spindle positioning and is required to tolerate mitotic arrest. Panigada D, Grianti P, Nespoli A, Rotondo G, Gallo Castro D, Quadri R, Piatti S, Plevani P, Muzi-Falconi M. Dev Cell. 2013 Sep 16 http://www.sciencedirect.com/science/article/pii/S1534580713004218 Structural Analysis of the G-Box Domain of the Microcephaly Protein CPAP Suggests a Role in Centriole Architecture. Hatzopoulos GN, Erat MC, Cutts E, Rogala KB, Slater LM, Stansfeld PJ, Vakonakis I. Structure. 2013 Sep 24 http://www.sciencedirect.com/science/article/pii/S0969212613003407 Stress-induced localization of HSPA6 (HSP70B') and HSPA1A (HSP70-1) proteins to centrioles in human neuronal cells. Khalouei S, Chow AM, Brown IR. Cell Stress Chaperones. 2013 Sep 6 http://link.springer.com/article/10.1007%2Fs12192-013-0459-2

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Monopolar Spindle 1 (Mps1) Matthew L. H. Chu and Patrick A. Eyers http://link.springer.com/referenceworkentry/10.1007%2F978-1-4419-0461-4_576/fulltext.html LRRC45 Is a Centrosome Linker Component Required for Centrosome Cohesion. He R, Huang N, Bao Y, Zhou H, Teng J, Chen J. Cell Rep. 2013 Sep 26 http://www.sciencedirect.com/science/article/pii/S2211124713004294 Measuring Affinities of Fission Yeast Spindle Pole Body Proteins in Live Cells across the Cell Cycle. McCormick CD, Akamatsu MS, Ti SC, Pollard TD. Biophys J. 2013 Sep 17 http://www.sciencedirect.com/science/article/pii/S0006349513009302 Crystal structures of the CPAP/STIL complex reveal its role in centriole assembly and human microcephaly. Cottee MA, Muschalik N, Wong YL, Johnson CM, Johnson S, Andreeva A, Oegema K, Lea SM, Raff JW, van Breugel M. Elife. 2013 Sep 17 http://elife.elifesciences.org/content/2/e01071 Dynein recruitment to nuclear pores activates apical nuclear migration and mitotic entry in brain progenitor cells. Hu DJ, Baffet AD, Nayak T, Akhmanova A, Doye V, Vallee RB. Cell. 2013 Sep 12 http://www.cell.com/abstract/S0092-8674(13)01018-0?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=UEM795F:NIY8G1F The RNA-binding protein Whi3 is a key regulator of developmental signaling and ploidy in Saccharomyces cerevisiae. Schladebeck S, Mösch HU. Genetics. 2013 Sep http://www.genetics.org/content/195/1/73.abstract.html Loss of cilia suppresses cyst growth in genetic models of autosomal dominant polycystic kidney disease. Ma M, Tian X, Igarashi P, Pazour GJ, Somlo S. Nat Genet. 2013 Sep http://www.nature.com/ng/journal/v45/n9/full/ng.2715.html DYX1C1 is required for axonemal dynein assembly and ciliary motility. Tarkar A, Loges NT, Slagle CE, Francis R, Dougherty GW, Tamayo JV, Shook B, Cantino M, Schwartz D, Jahnke C, Olbrich H, Werner C, Raidt J, Pennekamp P, Abouhamed M, Hjeij R, Köhler G, Griese M, Li Y, Lemke K, Klena N, Liu X, Gabriel G, Tobita K, Jaspers M, Morgan LC, Shapiro AJ, Letteboer SJ, Mans DA, Carson JL, Leigh MW, Wolf WE, Chen S, Lucas JS, Onoufriadis A, Plagnol V, Schmidts M, Boldt K; UK10K, Roepman R, Zariwala MA, Lo CW, Mitchison HM, Knowles MR, Burdine RD, Loturco JJ, Omran H. Nat Genet. 2013 Sep http://www.nature.com/ng/journal/v45/n9/full/ng.2707.html

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Mol Biol Cell. 2013 May http://www.molbiolcell.org/content/24/9/1321.long Role of Nek2 on centrosome duplication and aneuploidy in breast cancer cells. Cappello P, Blaser H, Gorrini C, Lin DC, Elia AJ, Wakeham A, Haider S, Boutros PC, Mason JM, Miller NA, Youngson B, Done SJ, Mak TW. Oncogene. 2013 May 27 http://www.nature.com/onc/journal/vaop/ncurrent/full/onc2013183a.html Structure-function analysis of the EF-hand protein centrin-2 for its intracellular localization and nucleotide excision repair. Nishi R, Sakai W, Tone D, Hanaoka F, Sugasawa K. Nucleic Acids Res. 2013 May 28 http://nar.oxfordjournals.org/content/early/2013/05/28/nar.gkt434.long PPP1R42, a PP1 binding protein, regulates centrosome dynamics in ARPE-19 cells. Devaul N, Wang R, Sperry AO. Biol Cell. 2013 May 29 http://onlinelibrary.wiley.com/doi/10.1111/boc.201300019/abstract Regulation of centrosome movements by Numb and the Collapsin Response Mediator Protein during Drosophila sensory progenitor asymmetric division. Jauffred B, Llense F, Sommer B, Wang Z, Martin C, Bellaiche Y. Development. 2013 May 29 http://dev.biologists.org/content/early/2013/05/23/dev.087338.long The interplay between RPGR, PDEδ and Arl2/3 regulate the ciliary targeting of farnesylated cargo. Wätzlich D, Vetter I, Gotthardt K, Miertzschke M, Chen YX, Wittinghofer A, Ismail S. EMBO Rep. 2013 May 2 http://www.nature.com/embor/journal/v14/n5/full/embor201337a.html Xenopus laevis nucleotide binding protein 1 (xNubp1) is important for convergent extension movements and controls ciliogenesis via regulation of the actin cytoskeleton. Ioannou A, Santama N, Skourides PA. Dev Biol. 2013 May 16 http://www.sciencedirect.com/science/article/pii/S0012160613002479 A SAS-6-Like Protein Suggests that the Toxoplasma Conoid Complex Evolved from Flagellar Components. Deleon JC, Scheumann N, Beatty W, Beck JR, Tran JQ, Yau C, Bradley PJ, Gull K, Wickstead B, Morrissette NS. Eukaryot Cell. 2013 May 17 http://ec.asm.org/content/early/2013/05/13/EC.00096-13.long miR-34b regulates multiciliogenesis during organ formation in zebrafish. Wang L, Fu C, Fan H, Du T, Dong M, Chen Y, Jin Y, Zhou Y, Deng M, Gu A, Jing Q, Liu T, Zhou Y. Development. 2013 May 22 http://dev.biologists.org/content/early/2013/05/22/dev.092825.long The cilium secretes bioactive ectosomes. Wood CR, Huang K, Diener DR, Rosenbaum JL.

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Curr Biol. 2013 May 20 http://www.sciencedirect.com/science/article/pii/S0960982213004272 Cell Biology: DUBing CP110 Controls Centrosome Numbers. Bärenz F, Hoffmann I. Curr Biol. 2013 May 20 http://www.sciencedirect.com/science/article/pii/S0960982213004405 Cell cycle-dependent localization of CHK2 at centrosomes during mitosis. Chouinard G, Clément I, Lafontaine J, Rodier F, Schmitt E. Cell Div. 2013 May 16 http://www.celldiv.com/content/8/1/7 Direct Binding of SAS-6 to ZYG-1 Recruits SAS-6 to the Mother Centriole for Cartwheel Assembly. Lettman MM, Wong YL, Viscardi V, Niessen S, Chen SH, Shiau AK, Zhou H, Desai A, Oegema K. Dev Cell. 2013 May 13 http://www.sciencedirect.com/science/article/pii/S1534580713001603 Mitotic rounding alters cell geometry to ensure efficient bipolar spindle formation. Lancaster OM, Le Berre M, Dimitracopoulos A, Bonazzi D, Zlotek-Zlotkiewicz E, Picone R, Duke T, Piel M, Baum B. Dev Cell. 2013 May 13 http://www.sciencedirect.com/science/article/pii/S1534580713001858 EGF-Induced Centrosome Separation Promotes Mitotic Progression and Cell Survival. Mardin BR, Isokane M, Cosenza MR, Krämer A, Ellenberg J, Fry AM, Schiebel E. Dev Cell. 2013 May 13 http://www.sciencedirect.com/science/article/pii/S1534580713001615?via=ihub CEP162 is an axoneme-recognition protein promoting ciliary transition zone assembly at the cilia base. Wang WJ, Tay HG, Soni R, Perumal GS, Goll MG, Macaluso FP, Asara JM, Amack JD, Bryan Tsou MF. Nat Cell Biol. 2013 May 5 http://www.nature.com/ncb/journal/v15/n6/full/ncb2739.html Centrosome aberrations in bone marrow cells from patients with myelodysplastic syndromes correlate with chromosomal instability. Nolte F, Giehl M, Haass W, Nowak V, Schumann C, Nowak D, Mossner M, Popp HD, Schulze TJ, Klein S, Seifarth W, Hofmann WK, Fabarius A. Ann Hematol. 2013 May 5 http://link.springer.com/article/10.1007%2Fs00277-013-1772-7 The UBXN-2/p37/p47 adaptors of CDC-48/p97 regulate mitosis by limiting the centrosomal recruitment of Aurora A. Kress E, Schwager F, Holtackers R, Seiler J, Prodon F, Zanin E, Eiteneuer A, Toya M, Sugimoto A, Meyer H, Meraldi P, Gotta M. J Cell Biol. 2013 May 13 http://jcb.rupress.org/content/201/4/559.long More isn't always better: Limiting centrosome size in interphase. Takahashi M, Matsuo K.

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Everything in moderation: Proteolytic regulation of centrosome duplication. Peel N. Worm. 2013 Apr 1 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3704442/ Primary ciliogenesis requires the distal appendage component Cep123. Sillibourne JE, Hurbain I, Grand-Perret T, Goud B, Tran P, Bornens M. Biol Open. 2013 Apr 9 http://bio.biologists.org/content/2/6/535.long DNA repair mechanisms and the bypass of DNA damage in Saccharomyces cerevisiae. Boiteux S, Jinks-Robertson S. Genetics. 2013 Apr http://www.genetics.org/content/193/4/1025.abstract.html?etoc Mutations in TUBG1, DYNC1H1, KIF5C and KIF2A cause malformations of cortical development and microcephaly. Poirier K, Lebrun N, Broix L, Tian G, Saillour Y, Boscheron C, Parrini E, Valence S, Pierre BS, Oger M, Lacombe D, Geneviève D, Fontana E, Darra F, Cances C, Barth M, Bonneau D, Bernadina BD, N'guyen S, Gitiaux C, Parent P, des Portes V, Pedespan JM, Legrez V, Castelnau-Ptakine L, Nitschke P, Hieu T, Masson C, Zelenika D, Andrieux A, Francis F, Guerrini R, Cowan NJ, Bahi-Buisson N, Chelly J. Nat Genet. 2013 Apr 21 http://www.nature.com/ng/journal/v45/n6/full/ng.2613.html SQL-1, homologue of the Golgi protein GMAP210, modulates intraflagellar transport in C. elegans. Broekhuis JR, Rademakers S, Burghoorn J, Jansen G. J Cell Sci. 2013 Apr 15 http://jcs.biologists.org/content/126/8/1785.long SAPK pathways and p53 cooperatively regulate PLK4 activity and centrosome integrity under stress. Nakamura T, Saito H, Takekawa M. Nat Commun. 2013 Apr 30 http://www.nature.com/ncomms/journal/v4/n4/full/ncomms2752.html Identification of Cilia Genes That Affect Cell Cycle Progression Using Whole Genome Transcriptome Analysis in Chlamydomonas reinhardtti. Albee AJ, Kwan AL, Lin H, Granas D, Stormo GD, Dutcher SK. G3 (Bethesda). 2013 Apr 19 http://www.g3journal.org/content/early/2013/04/16/g3.113.006338.long Failure of centrosome migration causes a loss of motile cilia in talpid3 mutants. Stephen LA, Davis GM, McTeir KE, James J, McTeir L, Kierans M, Bain A, Davey MG. Dev Dyn. 2013 Apr 24 http://onlinelibrary.wiley.com/doi/10.1002/dvdy.23980/abstract;jsessionid=3946715E0E21E64A0675C3BCC41600C1.d02t01 Functional aspects of primary cilia in signaling, cell cycle and tumorigenesis. Basten SG, Giles RH. Cilia. 2013 Apr 29 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3662159/

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The MIA complex is a conserved and novel dynein regulator essential for normal ciliary motility. Yamamoto R, Song K, Yanagisawa HA, Fox L, Yagi T, Wirschell M, Hirono M, Kamiya R, Nicastro D, Sale WS. J Cell Biol. 2013 Apr 15 http://jcb.rupress.org/content/201/2/263.long A TPR domain-containing N-terminal module of MPS1 is required for its kinetochore localization by Aurora B. Nijenhuis W, von Castelmur E, Littler D, De Marco V, Tromer E, Vleugel M, van Osch MH, Snel B, Perrakis A, Kops GJ. J Cell Biol. 2013 Apr 15 http://jcb.rupress.org/content/201/2/217.long A solid-state control system for dynein-based ciliary/flagellar motility. King SM. J Cell Biol. 2013 Apr 15 http://jcb.rupress.org/content/201/2/173?etoc Cycling of the signaling protein phospholipase D through cilia requires the BBSome only for the export phase. Lechtreck KF, Brown JM, Sampaio JL, Craft JM, Shevchenko A, Evans JE, Witman GB. J Cell Biol. 2013 Apr 15 http://jcb.rupress.org/content/201/2/249 Xenopus oocyte meiosis lacks spindle assembly checkpoint control. Shao H, Li R, Ma C, Chen E, Liu XJ. J Cell Biol. 2013 Apr 15 http://jcb.rupress.org/content/201/2/191.long Hec1-dependent cyclin B2 stabilization regulates the G2-M transition and early prometaphase in mouse oocytes. Gui L, Homer H. Dev Cell. 2013 Apr 15 http://www.sciencedirect.com/science/article/pii/S1534580713001020 Q&A: Who needs a centrosome? Bettencourt-Dias M. BMC Biol. 2013 Apr 11 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3623764/ Aurora A is involved in central spindle assembly through phosphorylation of Ser 19 in P150Glued. Reboutier D, Troadec MB, Cremet JY, Chauvin L, Guen V, Salaun P, Prigent C. J Cell Biol. 2013 Apr 1 http://jcb.rupress.org/content/201/1/65.long CDK-dependent phosphorylation and nuclear exclusion coordinately control kinetochore assembly state. Gascoigne KE, Cheeseman IM. J Cell Biol. 2013 Apr 1 http://jcb.rupress.org/content/201/1/23.long

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Centrosome isolation and analysis by mass spectrometry-based proteomics. Jakobsen L, Schrøder JM, Larsen KM, Lundberg E, Andersen JS. Methods Enzymol. 2013 http://www.sciencedirect.com/science/article/pii/B9780123979445000183 CCDC41 is required for ciliary vesicle docking to the mother centriole. Joo K, Kim CG, Lee MS, Moon HY, Lee SH, Kim MJ, Kweon HS, Park WY, Kim CH, Gleeson JG, Kim J. Proc Natl Acad Sci U S A. 2013 Apr 9 http://www.pnas.org/content/110/15/5987.long One among many: ODF2 isoform 9, a.k.a. Cenexin-1, is required for ciliogenesis. Hehnly H, Hung HF, Doxsey S. Cell Cycle. 2013 Apr 1 http://www.landesbioscience.com/journals/cc/article/24330/ Human microcephaly protein CEP135 binds to hSAS-6 and CPAP, and is required for centriole assembly. Lin YC, Chang CW, Hsu WB, Tang CJ, Lin YN, Chou EJ, Wu CT, Tang TK. EMBO J. 2013 Apr 17 http://www.nature.com/emboj/journal/v32/n8/full/emboj201356a.html 3/2013 Flagellar regeneration requires cytoplasmic microtubule depolymerization and kinesin-13. Wang L, Piao T, Cao M, Qin T, Huang L, Deng H, Mao T, Pan J. J Cell Sci. 2013 Mar 15 http://jcs.biologists.org/content/126/6/1531.long PCM1 recruits Plk1 to the pericentriolar matrix to promote primary cilia disassembly before mitotic entry. Wang G, Chen Q, Zhang X, Zhang B, Zhuo X, Liu J, Jiang Q, Zhang C. J Cell Sci. 2013 Mar 15 http://jcs.biologists.org/content/126/6/1355.long Rer1p maintains ciliary length and signaling by regulating γ-secretase activity and Foxj1a levels. Jurisch-Yaksi N, Rose AJ, Lu H, Raemaekers T, Munck S, Baatsen P, Baert V, Vermeire W, Scales SJ, Verleyen D, Vandepoel R, Tylzanowski P, Yaksi E, de Ravel T, Yost HJ, Froyen G, Arrington CB, Annaert W. J Cell Biol. 2013 Mar 18 http://jcb.rupress.org/content/200/6/709.long USP33 regulates centrosome biogenesis via deubiquitination of the centriolar protein CP110. Li J, D'Angiolella V, Seeley ES, Kim S, Kobayashi T, Fu W, Campos EI, Pagano M, Dynlacht BD. Nature. 2013 Mar 14 http://www.nature.com/nature/journal/v495/n7440/full/nature11941.html

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p53 centrosomal localization diagnoses ataxia-telangiectasia homozygotes and heterozygotes. Prodosmo A, De Amicis A, Nisticò C, Gabriele M, Di Rocco G, Monteonofrio L, Piane M, Cundari E, Chessa L, Soddu S. J Clin Invest. 2013 Mar 1 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3582149/ Cenexin1 and Odf2: splice variants with diverged cilium functions. Chen JV, Megraw TL. Cell Cycle. 2013 Mar 15 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3637342/ Disengaging the Smc3/kleisin interface releases cohesin from Drosophila chromosomes during interphase and mitosis. Eichinger CS, Kurze A, Oliveira RA, Nasmyth K. EMBO J. 2013 Mar 6 http://www.nature.com/emboj/journal/v32/n5/full/emboj2012346a.html Chromosome segregation: how to open cohesin without cutting the ring? Murayama Y, Uhlmann F. EMBO J. 2013 Mar 6 http://www.nature.com/emboj/journal/v32/n5/full/emboj201322a.html The dominant force of Centrobin in centrosome asymmetry. Conduit PT. Nat Cell Biol. 2013 Mar 1 http://www.nature.com/ncb/journal/v15/n3/full/ncb2704.html VDAC3 and Mps1 negatively regulate ciliogenesis. Majumder S, Fisk HA. Cell Cycle. 2013 Mar 1 http://www.landesbioscience.com/journals/cc/article/23824/ Mps1 and Ipl1/Aurora B act sequentially to correctly orient chromosomes on the meiotic spindle of budding yeast. Meyer RE, Kim S, Obeso D, Straight PD, Winey M, Dawson DS. Science. 2013 Mar 1 http://www.sciencemag.org/content/339/6123/1071.long Cilia. 2012 May 2;1(1):7. doi: 10.1186/2046-2530-1-7. 2/2013 High LET Radiation Amplifies Centrosome Overduplication Through a Pathway of γ-Tubulin Monoubiquitination. Shimada M, Hirayama R, Komatsu K. Int J Radiat Oncol Biol Phys. 2013 Feb 20 http://www.sciencedirect.com/science/article/pii/S0360301613000734 Centrobin regulates centrosome function in interphase cells by limiting pericentriolar matrix recruitment. Jeffery JM, Grigoriev I, Poser I, van der Horst A, Hamilton N, Waterhouse N, Bleier J, Subramaniam VN, Maly IV, Akhmanova A, Khanna KK.

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Cell Cycle. 2013 Feb 26 http://www.landesbioscience.com/journals/cc/article/23879/ LGALS3BP regulates centriole biogenesis and centrosome hypertrophy in cancer cells. Fogeron ML, Müller H, Schade S, Dreher F, Lehmann V, Kühnel A, Scholz AK, Kashofer K, Zerck A, Fauler B, Lurz R, Herwig R, Zatloukal K, Lehrach H, Gobom J, Nordhoff E, Lange BM. Nat Commun. 2013 Feb 26 http://www.nature.com/ncomms/journal/v4/n2/full/ncomms2517.html An Analog-Sensitive Approach Identifies Basal Body Rotation and Flagellum Attachment Zone Elongation as Key Functions of PLK in trypanosoma brucei. Lozano-Núñez A, Ikeda KN, Sauer T, de Graffenried CL. Mol Biol Cell. 2013 Feb 27. http://www.molbiolcell.org/content/early/2013/02/25/mbc.E12-12-0846.abstract Inhibition of Cdk2 activity decreases Aurora-A kinase centrosomal localization and prevents centrosome amplification in breast cancer cells. Leontovich AA, Salisbury JL, Veroux M, Tallarita T, Billadeau D, McCubrey J, Ingle J, Galanis E, D'Assoro AB. Oncol Rep. 2013 Feb 27 http://www.spandidos-publications.com/10.3892/or.2013.2313 The RhoD to centrosomal duplication. Kyrkou A, Soufi M, Bahtz R, Ferguson C, Bai M, Parton RG, Hoffmann I, Zerial M, Fotsis T, Murphy C. Small GTPases. 2013 Feb 19 http://www.landesbioscience.com/journals/smallgtpases/article/23707/?nocache=1504967975 Sfr13 is a member of a large family of asymmetrically localized Sfi1-repeat proteins and is important for basal body separation and stability in Tetrahymena thermophila. Stemm-Wolf AJ, Meehl JB, Winey M. J Cell Sci. 2013 Feb 26. http://jcs.biologists.org/content/early/2013/02/21/jcs.120238.long Condensin II initiates sister chromatid resolution during S phase. Ono T, Yamashita D, Hirano T. J Cell Biol. 2013 Feb 18 http://jcb.rupress.org/content/200/4/429.long Conserved and divergent features of kinetochores and spindle microtubule ends from five species. McIntosh JR, O'Toole E, Zhudenkov K, Morphew M, Schwartz C, Ataullakhanov FI, Grishchuk EL. J Cell Biol. 2013 Feb 18;200(4):459-74. doi: 10.1083/jcb.201209154. http://jcb.rupress.org/content/200/4/459.long The microtubule affinity regulating kinase MARK4 promotes axoneme extension during early ciliogenesis. Kuhns S, Schmidt KN, Reymann J, Gilbert DF, Neuner A, Hub B, Carvalho R, Wiedemann P, Zentgraf H, Erfle H, Klingmüller U, Boutros M, Pereira G. J Cell Biol. 2013 Feb 18 http://jcb.rupress.org/content/200/4/505.long

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Meiotic HORMA domain proteins prevent untimely centriole disengagement during Caenorhabditis elegans spermatocyte meiosis. Schvarzstein M, Pattabiraman D, Bembenek JN, Villeneuve AM. Proc Natl Acad Sci U S A. 2013 Feb 11. http://www.pnas.org/content/110/10/E898.long The Meckel syndrome protein meckelin (TMEM67) is a key regulator of cilia function but is not required for tissue planar polarity. Leightner AC, Hommerding CJ, Peng Y, Salisbury JL, Gainullin VG, Czarnecki PG, Sussman CR, Harris PC. Hum Mol Genet. 2013 Feb 26. http://hmg.oxfordjournals.org/content/early/2013/02/26/hmg.ddt054.long Cell Division: Kinetochores SKAdaddle. Ye AA, Maresca TJ. Curr Biol. 2013 Feb 4 http://www.sciencedirect.com/science/article/pii/S0960982212014996 Effect of charge, hydrophobicity, and sequence of nucleoporins on the translocation of model particles through the nuclear pore complex. Tagliazucchi M, Peleg O, Kröger M, Rabin Y, Szleifer I. Proc Natl Acad Sci U S A. 2013 Feb 26 http://www.pnas.org/content/110/9/3363.long Structural basis of tubulin tyrosination by tubulin tyrosine ligase. Prota AE, Magiera MM, Kuijpers M, Bargsten K, Frey D, Wieser M, Jaussi R, Hoogenraad CC, Kammerer RA, Janke C, Steinmetz MO. J Cell Biol. 2013 Feb 4 http://jcb.rupress.org/content/200/3/259.abstract?etoc Architectural insights into a ciliary partition. Ounjai P, Kim KD, Liu H, Dong M, Tauscher AN, Witkowska HE, Downing KH. Curr Biol. 2013 Feb 18 http://www.cell.com/current-biology/abstract/S0960-9822%2813%2900032-8?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=HQ3YC4F:NIY8G1F Kif3a interacts with Dynactin subunit p150(Glued) to organize centriole subdistal appendages. Kodani A, Salomé Sirerol-Piquer M, Seol A, Manuel Garcia-Verdugo J, Reiter JF. EMBO J. 2013 Feb 20 http://www.nature.com/emboj/journal/v32/n4/abs/emboj20133a.html?WT.ec_id=EMBOJ-20130220 Conserved structural motifs in the central pair complex of eukaryotic flagella. Carbajal-González BI, Heuser T, Fu X, Lin J, Smith BW, Mitchell DR, Nicastro D. Cytoskeleton (Hoboken). 2013 Feb http://onlinelibrary.wiley.com/doi/10.1002/cm.21094/abstract;jsessionid=30F2BB60E295A9FFB5C8511ABA23FA70.d02t03 Branching Microtubule Nucleation in Xenopus Egg Extracts Mediated by Augmin and TPX2. Petry S, Groen AC, Ishihara K, Mitchison TJ, Vale RD.

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Cell. 2013 Feb 14 http://www.sciencedirect.com/science/article/pii/S0092867413000159 Nucleating new branches from old. Zheng Y, Iglesias PA. Cell. 2013 Feb 14 http://www.sciencedirect.com/science/article/pii/S0092867413001323 A complete mass-spectrometric map of the yeast proteome applied to quantitative trait analysis. Picotti P, Clément-Ziza M, Lam H, Campbell DS, Schmidt A, Deutsch EW, Röst H, Sun Z, Rinner O, Reiter L, Shen Q, Michaelson JJ, Frei A, Alberti S, Kusebauch U, Wollscheid B, Moritz RL, Beyer A, Aebersold R. Nature. 2013 Feb 14 http://www.nature.com/nature/journal/v494/n7436/full/nature11835.html?WT.ec_id=NATURE-20130214 Finding the sources of missing heritability in a yeast cross. Bloom JS, Ehrenreich IM, Loo WT, Lite TL, Kruglyak L. Nature. 2013 Feb 14;494(7436):234-7. doi: 10.1038/nature11867. Epub 2013 Feb 3. http://www.nature.com/nature/journal/v494/n7436/full/nature11867.html?WT.ec_id=NATURE-20130214 High-resolution cryo-electron microscopy structure of the Trypanosoma brucei ribosome. Hashem Y, des Georges A, Fu J, Buss SN, Jossinet F, Jobe A, Zhang Q, Liao HY, Grassucci RA, Bajaj C, Westhof E, Madison-Antenucci S, Frank J. Nature. 2013 Feb 21 http://www.nature.com/nature/journal/v494/n7437/full/nature11872.html Spindle pole body-anchored Kar3 drives the nucleus along microtubules from another nucleus in preparation for nuclear fusion during yeast karyogamy. Gibeaux R, Politi AZ, Nédélec F, Antony C, Knop M. Genes Dev. 2013 Feb 1 http://genesdev.cshlp.org/content/27/3/335.abstract.html?etoc Selective chemical crosslinking reveals a cep57-cep63-cep152 centrosomal complex. Lukinavičius G, Lavogina D, Orpinell M, Umezawa K, Reymond L, Garin N, Gönczy P, Johnsson K. Curr Biol. 2013 Feb 4 http://www.sciencedirect.com/science/article/pii/S0960982212015035 Removal of Centrosomal PP1 by NIMA Kinase Unlocks the MPF Feedback Loop to Promote Mitotic Commitment in S. pombe. Grallert A, Chan KY, Alonso-Nuñez ML, Madrid M, Biswas A, Alvarez-Tabarés I, Connolly Y, Tanaka K, Robertson A, Ortiz JM, Smith DL, Hagan IM. Curr Biol. 2013 Feb 4 http://www.sciencedirect.com/science/article/pii/S0960982212015126 Steroidogenic Factor 1 (NR5A1) Maintains Centrosome Homeostasis in Steroidogenic Cells by Restricting Centrosomal DNA-Dependent Protein Kinase Activation Chia-Yih Wang, Yung-Hsin Kao, Pao-Yen Lai, Wei-Yi Chen, and Bon-chu Chung Mol. Cell. Biol. 2013;33 476-484 http://mcb.asm.org/cgi/content/abstract/33/3/476?etoc

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1/2013 Suppressor mutations identify amino acids in PAA-1/PR65 that facilitate regulatory RSA-1/B″ subunit targeting of PP2A to centrosomes in C. elegans. Lange KI, Heinrichs J, Cheung K, Srayko M. Biol Open. 2013 Jan 15 http://bio.biologists.org/content/2/1/88.long Centrobin controls mother-daughter centriole asymmetry in Drosophila neuroblasts. Januschke J, Reina J, Llamazares S, Bertran T, Rossi F, Roig J, Gonzalez C. Nat Cell Biol. 2013 Jan 27 http://www.nature.com/ncb/journal/v15/n3/full/ncb2671.html The Role of NEDD1 Phosphorylation by Aurora A in Chromosomal Microtubule Nucleation and Spindle Function. Pinyol R, Scrofani J, Vernos I. Curr Biol. 2013 Jan 21 http://www.sciencedirect.com/science/article/pii/S0960982212013905 PCM1 Recruits Plk1 to Pericentriolar Matrix to Promote Primary Cilia Disassembly before Mitotic Entry. Wang G, Chen Q, Zhang X, Zhang B, Zhuo X, Liu J, Jiang Q, Zhang C. J Cell Sci. 2013 Jan 23 http://jcs.biologists.org/content/early/2013/01/22/jcs.114918.long Centriole distal appendages promote membrane docking, leading to cilia initiation. Tanos BE, Yang HJ, Soni R, Wang WJ, Macaluso FP, Asara JM, Tsou MF. Genes Dev. 2013 Jan 15 http://genesdev.cshlp.org/content/27/2/163.abstract.html?etoc Alternative cytoskeletal landscapes: cytoskeletal novelty and evolution in basal excavate protists. Dawson SC, Paredez AR. Curr Opin Cell Biol. 2013 Jan Localization of rRNA transcribed spacer domains in the nucleolinus and maternal procentrosomes of surf clam (Spisula) oocytes. Alliegro MA, Alliegro MC. RNA Biol. 2013 Jan Promoter hijack reveals pericentrin functions in mitosis and the DNA damage response. Wang Y, Dantas TJ, Lalor P, Dockery P, Morrison CG. Cell Cycle. 2013 Jan Katanin Localization Requires Triplet Microtubules in Chlamydomonas reinhardtii. Esparza JM, O'Toole E, Li L, Giddings TH Jr, Kozak B, Albee AJ, Dutcher SK. PLoS One. 2013

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The Ciliary G-Protein-Coupled Receptor Gpr161 Negatively Regulates the Sonic Hedgehog Pathway via cAMP Signaling Saikat Mukhopadhyay, Xiaohui Wen, Navneet Ratti, Alexander Loktev, Linda Rangell, Suzie J. Scales, Peter K. Jackson Cell - 17 January 2013 (Vol. 152, Issue 1, pp. 210-223) The PCP Effector, Fuzzy, Controls Cilial Assembly and Signaling by Recruiting Rabb and Dishevelled to the Primary Cilium Mol Biol Cell. 2013 Jan 9. Zilber Y, Babayeva S, Seo JH, Liu JJ, Mootin S, Torban E. Ofd1 Controls Dorso-Ventral Patterning and Axoneme Elongation during Embryonic Brain Development. D'Angelo A, De Angelis A, Avallone B, Piscopo I, Tammaro R, Studer M, Franco B. PLoS One. 2012 Transcriptional program of ciliated epithelial cells reveals new cilium and centrosome components and links to human disease. Hoh RA, Stowe TR, Turk E, Stearns T. PLoS One. 2012 NEK2 phosphorylation antagonizes the microtubule stabilizing activity of centrobin. Park J, Rhee K. Biochem Biophys Res Commun. 2013 Jan 3. Bardet-Biedl syndrome. Forsythe E, Beales PL. Eur J Hum Genet. 2013 Jan;21(1):8-13. The centrosome as potential target for cancer therapy and prevention. Korzeniewski N, Hohenfellner M, Duensing S. Expert Opin Ther Targets. 2013 Jan;17(1):43-52. Context-Dependent Regulation of Wnt Signaling through the Primary Cilium. Oh EC, Katsanis N. J Am Soc Nephrol. 2013 Jan;24 Variable expressivity of ciliopathy neurological phenotypes that encompass Meckel-Gruber syndrome and Joubert syndrome is caused by complex de-regulated ciliogenesis, Shh and Wnt signalling defects. Abdelhamed ZA, Wheway G, Szymanska K, Natarajan S, Toomes C, Inglehearn C, Johnson CA. Hum Mol Genet. 2013 Jan 2. Spatiotemporal analysis of organelle and macromolecular complex inheritance Victoria Menendez-Benitoa, Sjoerd J. van Deventera, Victor Jimenez-Garciaa, Marina Roy-Luzarragaa, Fred van Leeuwenb, and Jacques Neefjesa PNAS January 2, 2013 vol. 110 no. 1 175-180 Novel Checkpoint Pathway Organization Promotes Genome Stability in Stationary-Phase Yeast Cells Bonnie Alver, Maire K. Kelly and David T. Kirkpatrick Mol. Cell. Biol. January 2013 vol. 33 no. 2 457-472

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Cilia, tubby mice, and obesity Mukhopadhyay S, Jackson PK Cilia 2013, 2:1 (3 January 2013) 12/2012 Mitotic spindle (DIS)orientation and DISease: cause or consequence? Noatynska A, Gotta M, Meraldi P. J Cell Biol. 2012 Dec 24;199(7):1025-35. doi: 10.1083/jcb.201209015. http://jcb.rupress.org/content/199/7/1025.long Multiple essential roles for primary cilia in heart development. Willaredt MA, Gorgas K, Gardner HA, Tucker KL. Cilia. 2012 Dec 11 http://www.ciliajournal.com/content/1/1/23 The Tetrahymena meiotic chromosome bouquet is organized by centromeres and promotes interhomolog recombination. Loidl J, Lukaszewicz A, Howard-Till RA, Koestler T. J Cell Sci. 2012 Dec 1 http://jcs.biologists.org/content/125/23/5873.long The autoregulated instability of Polo-like kinase 4 limits centrosome duplication to once per cell cycle. Holland AJ, Fachinetti D, Zhu Q, Bauer M, Verma IM, Nigg EA, Cleveland DW. Genes Dev. 2012 Dec 15 http://genesdev.cshlp.org/content/27/2/226.extract.html?etoc Transcriptional program of ciliated epithelial cells reveals new cilium and centrosome components and links to human disease. Hoh RA, Stowe TR, Turk E, Stearns T. PLoS One. 2012 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0052166 Structure and protein composition of a basal-body scaffold ("cage") in the hypotrich ciliate Euplotes. Kloetzel JA, Brann TW. J Eukaryot Microbiol. 2012 Nov-Dec;59(6):587-600. Mutations of EFHC1, linked to juvenile myoclonic epilepsy, disrupt radial and tangential migrations during brain development. de Nijs L, Wolkoff N, Coumans B, Delgado-Escueta AV, Grisar T, Lakaye B. Hum Mol Genet. 2012 Dec 1;21(23):5106-17 FAM161A, associated with retinitis pigmentosa, is a component of the cilia-basal body complex and interacts with proteins involved in ciliopathies. Di Gioia SA, Letteboer SJ, Kostic C, Bandah-Rozenfeld D, Hetterschijt L, Sharon D, Arsenijevic Y, Roepman R, Rivolta C. Hum Mol Genet. 2012 Dec 1;21(23):5174-84. Computational centrosomics: an approach to understand the dynamic behaviour of centrosome.

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Kumar A, Purohit R. Gene. 2012 Dec 10;511(1):125-6. Functional redundancy between Cdc14 phosphatases in zebrafish ciliogenesis. Clément A, Solnica-Krezel L, Gould KL. Dev Dyn. 2012 Dec;241(12):1911-21. Centriole asymmetry determines algal cell geometry. Marshall WF. Curr Opin Plant Biol. 2012 Dec;15(6):632-7 Bld10/Cep135 stabilizes basal bodies to resist cilia-generated forces. Bayless BA, Giddings TH Jr, Winey M, Pearson CG. Mol Biol Cell. 2012 Dec;23(24):4820-32 Microtubules enable the planar cell polarity of airway cilia. Vladar EK, Bayly RD, Sangoram AM, Scott MP, Axelrod JD. Curr Biol. 2012 Dec 4 Centrosome fine ultrastructure of the osteocyte mechanosensitive primary cilium. Uzbekov RE, Maurel DB, Aveline PC, Pallu S, Benhamou CL, Rochefort GY. Microsc Microanal. 2012 Dec;18(6):1430-41. Multiplying madly: Deacetylases take charge of centrosome duplication and amplification. Hung HF, Hehnly H, Doxsey S. Cell Cycle. 2012 Dec 1;11(23):4304. USP44 regulates centrosome positioning to prevent aneuploidy and suppress tumorigenesis. Zhang Y, Foreman O, Wigle DA, Kosari F, Vasmatzis G, Salisbury JL, van Deursen J, Galardy PJ. J Clin Invest. 2012 Dec 3;122(12):4362-74. She1-Mediated Inhibition of Dynein Motility along Astral Microtubules Promotes Polarized Spindle Movements Steven M. Markus, Katelyn A. Kalutkiewicz, Wei-Lih Lee Current Biology - 4 December 2012 (Vol. 22, Issue 23, pp. 2221-2230) Planar Cell Polarity: Microtubules Make the Connection with Cilia Michael E. Werner, Brian J. Mitchell Current Biology - 4 December 2012 (Vol. 22, Issue 23, pp. R1001-R1004) Piwi-Interacting RNAs Protect DNA against Loss during Oxytricha Genome Rearrangement Wenwen Fang, Xing Wang, John R. Bracht, Mariusz Nowacki, Laura F. Landweber Cell - 7 December 2012 (Vol. 151, Issue 6, pp. 1243-1255) Tubulin polyglutamylation regulates flagellar motility by controlling a specific inner-arm dynein that interacts with the dynein regulatory complex Kubo, T., Yagi, T. and Kamiya, R. (2012), Cytoskeleton, 69: 1059–1068 KIF19A Is a Microtubule-Depolymerizing Kinesin for Ciliary Length Control

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Shinsuke Niwa, Kazuo Nakajima, Harukata Miki, Yusuke Minato, Doudou Wang, Nobutaka Hirokawa Developmental Cell - 11 December 2012 (Vol. 23, Issue 6, pp. 1167-1175) Research methods: Know when your numbers are significant. Vaux DL. Nature. 2012 Dec 13;492(7428):180-1. Centralspindlin links the mitotic spindle to the plasma membrane during cytokinesis. Lekomtsev S, Su KC, Pye VE, Blight K, Sundaramoorthy S, Takaki T, Collinson LM, Cherepanov P, Divecha N, Petronczki M. Nature. 2012 Dec 13;492(7428):276-9. Primary ciliary dyskinesia: recent advances in epidemiology, diagnosis, management and relationship with the expanding spectrum of ciliopathy. Bush A, Hogg C. Expert Rev Respir Med. 2012 Dec;6(6):663-82. Centrosomal MPF triggers the mitotic and morphogenetic switches of fission yeast. Grallert A, Patel A, Tallada VA, Chan KY, Bagley S, Krapp A, Simanis V, Hagan IM. Nat Cell Biol. 2012 Dec 9;15(1):88-95. The autoregulated instability of Polo-like kinase 4 limits centrosome duplication to once per cell cycle Andrew J. Holland, Daniele Fachinetti, Quan Zhu, Manuel Bauer, Inder M. Verma, Erich A. Nigg, and Don W. Cleveland Genes Dev. December 15, 2012 http://genesdev.cshlp.org/content/26/24/2684.full Merlin/ERM proteins establish cortical asymmetry and centrosome position Alan M. Hebert, Brian DuBoff, Jessica B. Casaletto, Andrew B. Gladden, and Andrea I. McClatchey Genes Dev. December 15, 2012 http://genesdev.cshlp.org/content/26/24/2709.full Cep164 mediates vesicular docking to the mother centriole during early steps of ciliogenesis Kerstin N. Schmidt, Stefanie Kuhns, Annett Neuner, Birgit Hub, Hanswalter Zentgraf, and Gislene Pereira. JCB. December 24, 2012 Par6γ is at the mother centriole and controls centrosomal protein composition through a Par6α-dependent pathway. Dormoy V, Tormanen K, Sütterlin C. J Cell Sci. 2012 Dec 21. The Rilp-like proteins Rilpl1 and Rilpl2 regulate ciliary membrane content. Schaub JR, Stearns T. Mol Biol Cell. 2012 Dec 21 A Centrin3-dependent, Transient, Appendage of the Mother Basal Body Guides the Positioning of the Daughter Basal Body in Paramecium.

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Jerka-Dziadosz M, Koll F, Włoga D, Gogendeau D, Garreau de Loubresse N, Ruiz F, Fabczak S, Beisson J. Protist. 2012 Dec 20. Tangentially Migrating Neurons Assemble a Primary Cilium that Promotes Their Reorientation to the Cortical Plate. Baudoin JP, Viou L, Launay PS, Luccardini C, Espeso Gil S, Kiyasova V, Irinopoulou T, Alvarez C, Rio JP, Boudier T, Lechaire JP, Kessaris N, Spassky N, Métin C. Neuron. 2012 Dec 20;76(6):1108-22. Genetic Analysis of Mps3 SUN Domain Mutants in Saccharomyces cerevisiae Reveals an Interaction with the SUN-Like Protein Slp1. Friederichs JM, Gardner JM, Smoyer CJ, Whetstine CR, Gogol M, Slaughter BD, Jaspersen SL. G3 (Bethesda). 2012 Dec;2(12):1703-18. Anthrax receptors position the spindle Nicolas Minc & Matthieu Piel Nature Cell Biology 15, 11–13 (2013) http://www.nature.com/ncb/journal/v15/n1/full/ncb2664.html?WT.ec_id=NCB-201301 Pivoting of microtubules around the spindle pole accelerates kinetochore capture Iana Kalinina, Amitabha Nandi, Petrina Delivani, Mariola R. Chacón, Anna H. Klemm, Damien Ramunno-Johnson, Alexander Krull, Benjamin Lindner, Nenad Pavin & Iva M. Tolić-Nørrelykke Nature Cell Biology 15, 82–87 (2013) http://www.nature.com/ncb/journal/v15/n1/full/ncb2640.html?WT.ec_id=NCB-201301 Centrosomal MPF triggers the mitotic and morphogenetic switches of fission yeast Agnes Grallert, Avinash Patel, Victor A. Tallada, Kuan Yoow Chan, Steven Bagley, Andrea Krapp, Viesturs Simanis & Iain M. Hagan Nature Cell Biology 15, 88–95 (2013) http://www.nature.com/ncb/journal/v15/n1/full/ncb2633.html?WT.ec_id=NCB-201301 11/2012 SUMOylation of the small GTPase ARL-13 promotes ciliary targeting of sensory receptors. Li Y, Zhang Q, Wei Q, Zhang Y, Ling K, Hu J. J Cell Biol. 2012 Nov 12 http://jcb.rupress.org/content/199/4/589.long Cdk1 promotes kinetochore bi-orientation and regulates Cdc20 expression during recovery from spindle checkpoint arrest Hongqing Liang, Hong Hwa Lim, Ashok Venkitaraman and Uttam Surana The EMBO Journal 31, 403 - 416 (4 November 2011) http://www.nature.com/emboj/journal/v31/n2/full/emboj2011385a.html?WT.ec_id=EMBOJ-20120118 Microtubule nucleation by γ-tubulin complexes Justin M. Kollman, Andreas Merdes, Lionel Mourey & David A. Agard Nature Reviews Molecular Cell Biology 12, 709-721 (November 2011) CP55, a novel key component of centrosomal organization in Dictyostelium.

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Kuhnert O, Baumann O, Meyer I, Gräf R. Cell Mol Life Sci. 2012 Nov;69(21):3651-64 The retinitis pigmentosa 28 protein FAM161A is a novel ciliary protein involved in intermolecular protein interaction and microtubule association. Zach F, Grassmann F, Langmann T, Sorusch N, Wolfrum U, Stöhr H. Hum Mol Genet. 2012 Nov 1;21(21):4573-86. Novel microcephalic primordial dwarfism disorder associated with variants in the centrosomal protein ninein. Dauber A, Lafranchi SH, Maliga Z, Lui JC, Moon JE, McDeed C, Henke K, Zonana J, Kingman GA, Pers TH, Baron J, Rosenfeld RG, Hirschhorn JN, Harris MP, Hwa V. J Clin Endocrinol Metab. 2012 Nov;97(11):E2140-51 The structure of the plk4 cryptic polo box reveals two tandem polo boxes required for centriole duplication. Slevin LK, Nye J, Pinkerton DC, Buster DW, Rogers GC, Slep KC. Structure. 2012 Nov 7;20(11):1905-17 SAS-6 coiled-coil structure and interaction with SAS-5 suggest a regulatory mechanism in C. elegans centriole assembly. Qiao R, Cabral G, Lettman MM, Dammermann A, Dong G. EMBO J. 2012 Nov 14;31(22):4334-47. Subdiffraction-resolution fluorescence microscopy reveals a domain of the centrosome critical for pericentriolar material organization. Mennella V, Keszthelyi B, McDonald KL, Chhun B, Kan F, Rogers GC, Huang B, Agard DA. Nat Cell Biol. 2012 Nov;14(11):1159-68. Subdiffraction imaging of centrosomes reveals higher-order organizational features of pericentriolar material. Lawo S, Hasegan M, Gupta GD, Pelletier L. Nat Cell Biol. 2012 Nov;14(11):1148-58. Nuclear envelope-associated dynein drives prophase centrosome separation and enables Eg5-independent bipolar spindle formation Jonne A Raaijmakers, Roy G H P van Heesbeen, Johnathan L Meaders, Erica F Geers, Belen Fernandez-Garcia, René H Medema and Marvin E Tanenbaum The EMBO Journal (2012) 31, 4179 – 4190 The amorphous pericentriolar cloud takes shape. Lüders J. Nat Cell Biol. 2012 Nov;14(11):1126-8. Centrosomes, chromosome instability (CIN) and aneuploidy. Vitre BD, Cleveland DW. Curr Opin Cell Biol. 2012 Nov 2 Building Complexity: Insights into Self-Organized Assembly of Microtubule-Based Architectures Radhika Subramanian, Tarun M. Kapoor Developmental Cell - 13 November 2012 (Vol. 23, Issue 5, pp. 874-885)

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Arl13b in Primary Cilia Regulates the Migration and Placement of Interneurons in the Developing Cerebral Cortex Holden Higginbotham, Tae-Yeon Eom, Laura E. Mariani, Amelia Bachleda, Joshua Hirt, Vladimir Gukassyan, Corey L. Cusack, Cary Lai, Tamara Caspary, E.S. Anton Developmental Cell - 13 November 2012 (Vol. 23, Issue 5, pp. 925-938) The Kinetochore-Bound Ska1 Complex Tracks Depolymerizing Microtubules and Binds to Curved Protofilaments Jens C. Schmidt, Haribabu Arthanari, Andras Boeszoermenyi, Natalia M. Dashkevich, Elizabeth M. Wilson-Kubalek, Nilah Monnier, Michelle Markus, Monika Oberer, Ron A. Milligan, Mark Bathe, Gerhard Wagner, Ekaterina L. Grishchuk, Iain M. Cheeseman Developmental Cell - 13 November 2012 (Vol. 23, Issue 5, pp. 968-980) PLK1 Interacts and Phosphorylates Axin That Is Essential for Proper Centrosome Formation. Ruan K, Ye F, Li C, Liou YC, Lin SC, Lin SY. PLoS One. 2012 Polo boxes come out of the crypt: a new view of PLK function and evolution. Jana SC, Bazan JF, Dias MB. Structure. 2012 Nov 7 The spinocerebellar ataxia-associated gene Tau tubulin kinase 2 controls the initiation of ciliogenesis. Goetz SC, Liem KF Jr, Anderson KV. Cell. 2012 Nov 9;151(4):847-58. The Spindle Assembly Checkpoint Pablo Lara-Gonzalez, Frederick G. Westhorpe, Stephen S. Taylor Current Biology - 20 November 2012 (Vol. 22, Issue 22, pp. R966-R980) Organelle Size Equalization by a Constitutive Process William B. Ludington, Linda Z. Shi, Qingyuan Zhu, Michael W. Berns, Wallace F. Marshall Current Biology - 20 November 2012 (Vol. 22, Issue 22, pp. 2173-2179) Basal bodies exhibit polarized positioning in zebrafish cone photoreceptors. Ramsey M, Perkins BD. J Comp Neurol. 2012 Nov 21. A kinesin-mediated mechanism that couples centrosomes to nuclei. Tikhonenko I, Magidson V, Gräf R, Khodjakov A, Koonce MP. Cell Mol Life Sci. 2012 Nov 17. α-Tubulin acetylation from the inside out Jawdat Al-Bassam and Kevin D. Corbett PNAS 2012 109 (48) 19515-19516 Atomic resolution structure of human α-tubulin acetyltransferase bound to acetyl-CoA Michael Taschner, Melanie Vetter, and Esben Lorentzen PNAS 2012 109 (48) 19649-19654 Structure of the α-tubulin acetyltransferase, αTAT1, and implications for tubulin-specific acetylation

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David R. Friedmann, Andrea Aguilar, Jiayi Fan, Maxence V. Nachury,and Ronen Marmorstein PNAS 2012 109 (48) 19655-19660 ARL13B, PDE6D, and CEP164 form a functional network for INPP5E ciliary targeting Melissa C. Humbert, Katie Weihbrecht, Charles C. Searby, Yalan Li,Robert M. Pope, Val C. Sheffield, and Seongjin Seo PNAS 2012 109 (48) 19691-19696 Targeting of CRMP-2 to the Primary Cilium Is Modulated by GSK-3β. Ou Y, Zhang Y, Cheng M, Rattner JB, Dobrinski I, van der Hoorn FA. PLoS One. 2012;7(11):e48773. Motors or dynamics: What really moves chromosomes? J. Richard McIntosh Nature Cell Biology 14, 1234 (2012) The interrelationship between APC/C and Plk1 activities in centriole disengagement. Hatano T, Sluder G. Biol Open. 2012 Nov 15;1(11):1153-60 Building a centriole. Avidor-Reiss T, Gopalakrishnan J. Curr Opin Cell Biol. 2012 Nov 27. Superresolution STED microscopy reveals differential localization in primary cilia T. Tony Yang, Perry J. Hampilos, Bhavik Nathwani, Christine H. Miller, Nupur D. Sutaria and Jung-Chi Liao Cytoskeleton 2 NOV 2012 Centrosome positioning in vertebrate development. Tang N, Marshall WF. J Cell Sci. 2012 Nov 1;125(Pt 21):4951-61 Three-Dimensional Architecture of the Rod Sensory Cilium and Its Disruption in Retinal Neurodegeneration Jared C. Gilliam, Juan T. Chang, Ivette M. Sandoval, Youwen Zhang, Tiansen Li, Steven J. Pittler, Wah Chiu, Theodore G. Wensel Cell - 21 November 2012 (Vol. 151, Issue 5, pp. 1029-1041) 10/2012 Biciliated ependymal cell proliferation contributes to spinal cord growth. Alfaro-Cervello C, Soriano-Navarro M, Mirzadeh Z, Alvarez-Buylla A, Garcia-Verdugo JM. J Comp Neurol. 2012 Oct 15;520(15):3528-52. Girdin locates in centrosome and midbody and plays an important role in cell division. Mao JZ, Jiang P, Cui SP, Ren YL, Zhao J, Yin XH, Enomoto A, Liu HJ, Hou L, Takahashi M, Zhang B. Cancer Sci. 2012 Oct;103(10):1780-7 Integrity and function of the Saccharomyces cerevisiae spindle pole body depends on connections between the membrane proteins Ndc1, Rtn1, and Yop1.

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Casey AK, Dawson TR, Chen J, Friederichs JM, Jaspersen SL, Wente SR. Genetics. 2012 Oct;192(2):441-55 The centriolar satellite protein Cep131 is important for genome stability. Staples CJ, Myers KN, Beveridge RD, Patil AA, Lee AJ, Swanton C, Howell M, Boulton SJ, Collis SJ. J Cell Sci. 2012 Oct 15;125(Pt 20):4770-9. End-on microtubule-dynein interactions and pulling-based positioning of microtubule organizing centers. Laan L, Roth S, Dogterom M. Cell Cycle. 2012 Oct 15;11(20):3750-7. VDAC3 regulates centriole assembly by targeting Mps1 to centrosomes. Majumder S, Slabodnick M, Pike A, Marquardt J, Fisk HA. Cell Cycle. 2012 Oct 1;11(19):3666-78 The centrosome regulates the Rab11- dependent recycling endosome pathway at appendages of the mother centriole. Hehnly H, Chen CT, Powers CM, Liu HL, Doxsey S. Curr Biol. 2012 Oct 23;22(20):1944-50 C-NAP1 and rootletin restrain DNA damage-induced centriole splitting and facilitate ciliogenesis. Conroy PC, Saladino C, Dantas TJ, Lalor P, Dockery P, Morrison CG. Cell Cycle. 2012 Oct 15;11(20):3769-78. The role of retrograde intraflagellar transport in flagellar assembly, maintenance, and function Benjamin D. Engel, Hiroaki Ishikawa, Kimberly A. Wemmer, Stefan Geimer, Ken-ichi Wakabayashi, Masafumi Hirono, Branch Craige, Gregory J. Pazour, George B. Witman, Ritsu Kamiya, and Wallace F. Marshall J. Cell Biol. 2012;199 151-167 Cortical dynein is critical for proper spindle positioning in human cells Sachin Kotak, Coralie Busso, and Pierre Gonczy J. Cell Biol. 2012;199 97-110 Mad2 and the APC/C compete for the same site on Cdc20 to ensure proper chromosome segregation Daisuke Izawa and Jonathon Pines J. Cell Biol. 2012;199 27-37 EB1 acetylation by P300/CBP-associated factor (PCAF) ensures accurate kinetochore–microtubule interactions in mitosis Peng Xiaa, Zhikai Wanga, Xing Liua, Bing Wua, Juncheng Wanga, Tarsha Wardb, Liangyu Zhanga, Xia Dinga, Gary Gibbonsb, Yunyu Shia, and Xuebiao Yaoa PNAS October 9, 2012 vol. 109 Suppression of centrosome duplication and amplification by deacetylases. Ling H, Peng L, Seto E, Fukasawa K. Cell Cycle. 2012 Oct 15;11(20):3779-91.

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Hedgehog Signaling and the Cilium: in the Zone Jonathan Eggenschwiler Developmental Cell - 16 October 2012 (Vol. 23, Issue 4, pp. 677-678) Integration of Kinase and Phosphatase Activities by BUBR1 Ensures Formation of Stable Kinetochore-Microtubule Attachments Saskia J.E. Suijkerbuijk, Mathijs Vleugel, Antoinette Teixeira, Geert J.P.L. Kops Developmental Cell - 16 October 2012 (Vol. 23, Issue 4, pp. 745-755) A Smoothened-Evc2 Complex Transduces the Hedgehog Signal at Primary Cilia Karolin V. Dorn, Casey E. Hughes, Rajat Rohatgi Developmental Cell - 16 October 2012 (Vol. 23, Issue 4, pp. 823-835) How Information Theory Handles Cell Signaling and Uncertainty Matthew D. Brennan, Raymond Cheong, Andre Levchenko Science 19 October 2012: Vol. 338 no. 6105 pp. 334-335 Evidence of asymmetric cell division and centrosome inheritance in human neuroblastoma cells. Izumi H, Kaneko Y. Proc Natl Acad Sci U S A. 2012 Oct 30;109(44):18048-53. What are those cilia doing in the neural tube? Bay SN, Caspary T Cilia 2012, 1:19 (1 October 2012) Primary cilia and forebrain development. Willaredt MA, Tasouri E, Tucker KL. Mech Dev. 2012 Oct 22. The Ndc80 kinetochore complex directly modulates microtubule dynamics Neil T. Umbreita, Daniel R. Gestauta, Jerry F. Tiena, Breanna S. Vollmara, Tamir Gonena, Charles L. Asburyc, and Trisha N. Davisa PNAS October 2, 2012 vol. 109 no. 40 16113-16118 Bisphenol A and the primate ovary. Miller DE, Hawley RS. Proc Natl Acad Sci U S A. 2012 Oct 23;109(43):17315-6 CEP90 is required for the assembly and centrosomal accumulation of centriolar satellites, which is essential for primary cilia formation. Kim K, Lee K, Rhee K. PLoS One. 2012;7(10):e48196. The Centrosome Regulates the Rab11- Dependent Recycling Endosome Pathway at Appendages of the Mother Centriole Heidi Hehnly, Chun-Ting Chen, Christine M. Powers, Hui-Lin Liu, Stephen Doxsey Current Biology - 23 October 2012 (Vol. 22, Issue 20, pp. 1944-1950) Growth, interaction, and positioning of microtubule asters in extremely large vertebrate embryo cells. Mitchison T, Wühr M, Nguyen P, Ishihara K, Groen A, Field CM. Cytoskeleton (Hoboken). 2012 Oct;69(10):738-50.

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Structure-based prediction of protein–protein interactions on a genome-wide scale Qiangfeng Cliff Zhang, Donald Petrey, Lei Deng, Li Qiang, Yu Shi et al. Nature contents: 04 October 2012 Volume 490 Number 7418 http://www.nature.com/nature/journal/v490/n7421/full/nature11503.html Calcium-dependent folding of single calmodulin molecules Johannes Stiglera and Matthias Riefa PNAS October 30, 2012 vol. 109 no. 44 17814-17819 3D-structured illumination microscopy provides novel insight into architecture of human centrosomes. Sonnen KF, Schermelleh L, Leonhardt H, Nigg EA. Biol Open. 2012 Oct 15;1(10):965-76. Phosphorylation network dynamics in the control of cell cycle transitions Daniel Fisher, Liliana Krasinska, Damien Coudreuse, and Béla Novák J Cell Sci 2012 125:4703-4711 The N-terminal TOG domain of Arabidopsis MOR1 modulates affinity for microtubule polymers Bettina Lechner, Madeleine C. Rashbrooke, David A. Collings, Ryan C. Eng,Eiko Kawamura, Angela T. Whittington, and Geoffrey O. Wasteneys J Cell Sci 2012 125:4812-4821 Proper positioning of the cleavage furrow requires α-actinin to regulate the specification of different populations of microtubules Vinayaka Srinivas and Maki Murata-Hori J Cell Sci 2012 125:4713-4719 Mph1 kinetochore localization is crucial and upstream in the hierarchy of spindle assembly checkpoint protein recruitment to kinetochores Stephanie Heinrich, Hanna Windecker, Nicole Hustedt, and Silke Hauf J Cell Sci 2012 125:4720-4727 09/2012 Role of centrins 2 and 3 in organelle segregation and cytokinesis in Trypanosoma brucei. Selvapandiyan A, Kumar P, Salisbury JL, Wang CC, Nakhasi HL. PLoS One. 2012 http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0045288 Cep57, a NEDD1-binding pericentriolar material component, is essential for spindle pole integrity Qixi Wu, Runsheng He, Haining Zhou, Albert CH Yu, Bo Zhang, Junlin Teng and Jianguo Chen Cell Research 22, 1390-1401 (September 2012) Nek2 localises to the distal portion of the mother centriole/basal body and is required for timely cilium disassembly at the G2/M transition Cosma Spalluto, David I. Wilson, Tom Hearn

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European Journal of Cell Biology, Volume 91, Issue 9, September 2012, Pages 675-686, ISSN 0171-9335, 10.1016/j.ejcb.2012.03.009. URL: http://www.sciencedirect.com/science/article/pii/S0171933512000623 Such small hands: the roles of centrins/caltractins in the centriole and in genome maintenance Tiago J. Dantas, Owen M. Daly, Ciaran G. Morrison Cellular and Molecular Life Sciences, September 2012, Volume 69, Issue 18, pp 2979-2997 The centriolar satellite proteins Cep72 and Cep290 interact and are required for recruitment of BBS proteins to the cilium. Stowe TR, Wilkinson CJ, Iqbal A, Stearns T. Mol Biol Cell. 2012 Sep;23(17):3322-35. Structural peculiarities associated with multiflagellate sperm in the emu, Dromaius novaehollandiae. du Plessis L, Soley JT. Theriogenology. 2012 Sep 15;78(5):1094-101. Phosphoregulation of the RNA-binding protein Hu antigen R (HuR) by Cdk5 affects centrosome function. Filippova N, Yang X, King P, Nabors LB. J Biol Chem. 2012 Sep 14;287(38):32277-87 Poly-ADP ribosylation of Miki by tankyrase-1 promotes centrosome maturation. Ozaki Y, Matsui H, Asou H, Nagamachi A, Aki D, Honda H, Yasunaga S, Takihara Y, Yamamoto T, Izumi S, Ohsugi M, Inaba T. Mol Cell. 2012 Sep 14;47(5):694-706. Cell cycle: Maintaining centrosome copy number. Baumann K. Nat Rev Mol Cell Biol. 2012 Sep;13(9):542 Functional Analysis of Centrosomal Kinase Substrates in Drosophila melanogaster reveals a New Function of the Nuclear Envelope Component Otefin in Cell Cycle Progression Karin Habermann, Ekaterina Mirgorodskaya, Johan Gobom, Verena Lehmann, Hannah Muller, Katharina Blumlein, Michael J. Deery, Irina Czogiel, Christoph Erdmann, Markus Ralser, Jens Peter von Kries, and Bodo M. H. Lange Mol. Cell. Biol. 2012;32 3554-3569 http://mcb.asm.org/cgi/content/abstract/32/17/3554?etoc γ-Tubulin plays a key role in inactivating APC/C(Cdh1) at the G(1)-S boundary. Edgerton-Morgan H, Oakley BR. J Cell Biol. 2012 Sep 3;198(5):785-91. Polarity and asymmetry in the arrangement of dynein and related structures in the Chlamydomonas axoneme Khanh Huy Bui, Toshiki Yagi, Ryosuke Yamamoto, Ritsu Kamiya, and Takashi Ishikawa JCB vol. 198 no. 5 913-925 Dishevelled stabilization by the ciliopathy protein Rpgrip1l is essential for planar cell polarity

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Alexia Mahuzier, Helori-Mael Gaudé, Valentina Grampa, Isabelle Anselme, Flora Silbermann, Margot Leroux-Berger, Delphine Delacour, Jerome Ezan, Mireille Montcouquiol, Sophie Saunier, Sylvie Schneider-Maunoury, and Christine Vesque JCB vol. 198 no. 5 927-940 Oscillation of APC/C activity during cell cycle arrest promotes centrosome amplification. Prosser SL, Samant MD, Baxter JE, Morrison CG, Fry AM. J Cell Sci. 2012 Sep 6. Integrins regulate centrosome integrity and astrocyte polarization following a wound. Peng H, Ong YM, Shah WA, Holland PC, Carbonetto S. Dev Neurobiol. 2012 Sep 4. RTTN mutations link primary cilia function to organization of the human cerebral cortex. Kheradmand Kia S, Verbeek E, Engelen E, Schot R, Poot RA, de Coo IF, Lequin MH, Poulton CJ, Pourfarzad F, Grosveld FG, Brehm A, de Wit MC, Oegema R, Dobyns WB, Verheijen FW, Mancini GM. Am J Hum Genet. 2012 Sep 7;91(3):533-40. Supernumerary Centrosomes Nucleate Extra Cilia and Compromise Primary Cilium Signaling Moe R. Mahjoub, Tim Stearns Current Biology - 11 September 2012 (Vol. 22, Issue 17, pp. 1628-1634) Structural Probing of a Protein Phosphatase 2A Network by Chemical Cross-Linking and Mass Spectrometry Franz Herzog, Abdullah Kahraman, Daniel Boehringer, Raymond Mak, Andreas Bracher, Thomas Walzthoeni,Alexander Leitner, Martin Beck, Franz-Ulrich Hartl, Nenad Ban, Lars Malmström, and Ruedi Aebersold Science 14 September 2012: 1348-1352. Drosophila Cep135/Bld10 maintains proper centriole structure but is dispensable for cartwheel formation. Roque H, Wainman A, Richens J, Kozyrska K, Franz A, Raff JW. J Cell Sci. 2012 Sep 12 Cell confinement controls centrosome positioning and lumen initiation during epithelial morphogenesis. Rodríguez-Fraticelli AE, Auzan M, Alonso MA, Bornens M, Martín-Belmonte F. J Cell Biol. 2012 Sep 17;198(6):1011-23. Epitope of titin a-band-specific monoclonal antibody Tit1 5 H1.1 is highly conserved in several Fn3 domains of the titin molecule. Centriole staining in human, mouse and zebrafish cells. Mikelsaar AV, Sünter A, Mikelsaar R, Toomik P, Kõiveer A, Mikelsaar I, Juronen E. Cell Div. 2012 Sep 17;7(1):21. CAND1 promotes PLK4-mediated centriole overduplication and is frequently disrupted in prostate cancer. Korzeniewski N, Hohenfellner M, Duensing S. Neoplasia. 2012 Sep;14(9):799-806.

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Electron tomography of the microtubule cytoskeleton in multinucleated hyphae of Ashbya gossypii. Gibeaux R, Lang C, Politi AZ, Jaspersen SL, Philippsen P, Antony C. J Cell Sci. 2012 Sep 26. Poc1A and Poc1B act together in human cells to ensure centriole integrity. Venoux M, Tait X, Hames RS, Straatman KR, Woodland HR, Fry AM. J Cell Sci. 2012 Sep 26. Investigating embryonic expression patterns and evolution of AHI1 and CEP290 genes, implicated in Joubert syndrome. Cheng YZ, Eley L, Hynes AM, Overman LM, Simms RJ, Barker A, Dawe HR, Lindsay S, Sayer JA. PLoS One. 2012;7(9):e44975. A nuclear-derived proteinaceous matrix embeds the microtubule spindle apparatus during mitosis Changfu Yaoa, Uttama Rathb, Helder Maiatoc, David Sharpb, Jack Girtona, Kristen M. Johansena, and Jørgen Johansena, Mol. Biol. Cell September 15, 2012 vol. 23 no. 18 3532-3541 Microtubules: Sizing Up the GTP Cap Gary Brouhard, David Sept Current Biology - 25 September 2012 (Vol. 22, Issue 18, pp. R802-R803) Estimating the Microtubule GTP Cap Size In Vivo Dominique Seetapun, Brian T. Castle, Alistair J. McIntyre, Phong T. Tran, David J. Odde Current Biology - 25 September 2012 (Vol. 22, Issue 18, pp. 1681-1687) Paramecium BBS genes are key to presence of channels in Cilia Valentine MS, Rajendran A, Yano J, Weeraratne S, Beisson J, Cohen J, Koll F, Van Houten J Cilia 2012, 1:16 (3 September 2012) Heat shock induces rapid resorption of primary cilia Natalia V. Prodromou, Clare L. Thompson, Daniel P. S. Osborn,Kathryn F. Cogger, Rachel Ashworth, Martin M. Knight, Philip L. Beales,and J. Paul Chapple J Cell Sci 2012 125:4297-4305 The conserved centrosomal protein FOR20 is required for assembly of the transition zone and basal body docking at the cell surface Anne Aubusson-Fleury, Michel Lemullois, Nicole Garreau de Loubresse, Chloé Laligné, Jean Cohen, Olivier Rosnet, Maria Jerka-Dziadosz, Janine Beisson, and France Koll J Cell Sci 2012 125:4395-4404 http://jcs.biologists.org/content/125/18/4395.abstract.html?etoc The Mad1–Mad2 balancing act – a damaged spindle checkpoint in chromosome instability and cancer Scott C. Schuyler, Yueh-Fu Wu, and Vivian Jen-Wei Kuan J Cell Sci 2012 125:4197-4206 http://jcs.biologists.org/content/125/18/4197.abstract.html?etoc Heat shock induces rapid resorption of primary cilia

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Natalia V. Prodromou, Clare L. Thompson, Daniel P. S. Osborn, Kathryn F.Cogger, Rachel Ashworth, Martin M. Knight, Philip L. Beales, and J. Paul Chapple J Cell Sci 2012 125:4297-4305 http://jcs.biologists.org/content/125/18/4297.abstract.html?etoc 08/2012 Primary cilia and aberrant cell signaling in epithelial ovarian cancer. Egeberg DL, Lethan M, Manguso R, Schneider L, Awan A, Jørgensen TS, Byskov AG, Pedersen LB, Christensen ST. Cilia. 2012 Aug 10 http://www.ciliajournal.com/content/1/1/15 Centrosomes and cilia in human disease Mónica Bettencourt-Dias, Friedhelm Hildebrandt, David Pellman, Geoff Woods, Susana A. Godinho Trends in Genetics, Volume 27, Issue 8, August 2011 http://www.sciencedirect.com/science/article/pii/S0168952511000655 Tankyrase 1 regulates centrosome function by controlling CPAP stability. Kim MK, Dudognon C, Smith S. EMBO Rep. 2012 Aug;13(8):724-32. The evolution of land plant cilia. Hodges, M. E., Wickstead, B., Gull, K. and Langdale, J. A. New Phytologist. (2012) doi: 10.1111/j.1469-8137.2012.04197.x URL: http://onlinelibrary.wiley.com/doi/10.1111/j.1469-8137.2012.04197.x/full Centrosome asymmetry and inheritance during animal development Pelletier L, Yamashita YM. Curr Opin Cell Biol. 2012 Aug;24(4):541-6 Tubulin nucleotide status controls Sas-4-dependent pericentriolar material recruitment. Gopalakrishnan J, Chim YC, Ha A, Basiri ML, Lerit DA, Rusan NM, Avidor-Reiss T. Nat Cell Biol. 2012 Aug;14(8):865-73 Regulation of dynein localization and centrosome positioning by Lis-1 and asunder during Drosophila spermatogenesis. Sitaram P, Anderson MA, Jodoin JN, Lee E, Lee LA. Development. 2012 Aug;139(16):2945-54. Ciliary disorder of the skeleton. Huber C, Cormier-Daire V. Am J Med Genet C Semin Med Genet. 2012 Aug 15;160C(3):165-74. Cartwheel architecture of Trichonympha basal body. Guichard P, Desfosses A, Maheshwari A, Hachet V, Dietrich C, Brune A, Ishikawa T, Sachse C, Gönczy P. Science. 2012 Aug 3;337(6094):553

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Analysis of centrosome localization of BRCA1 and its activity in suppressing centrosomal aster formation. Tarapore P, Hanashiro K, Fukasawa K. Cell Cycle. 2012 Aug 1;11(15):2931-46 Nek9 phosphorylation of NEDD1/GCP-WD contributes to Plk1 control of γ-tubulin recruitment to the mitotic centrosome. Sdelci S, Schütz M, Pinyol R, Bertran MT, Regué L, Caelles C, Vernos I, Roig J. Curr Biol. 2012 Aug 21;22(16):1516-23. Fission yeast Alp14 is a dose-dependent plus end–tracking microtubule polymerase Jawdat Al-Bassam, Hwajin Kim, Ignacio Flor-Parra, Neeraj Lal,Hamida Velji, and Fred Chang Mol. Biol. Cell 2012 23:15 2878-2890; First Published on June 13, 2012 AMPK Regulates Mitotic Spindle Orientation through Phosphorylation of Myosin Regulatory Light Chain Jose T. Thaiparambil, Carrie M. Eggers, and Adam I. Marcus Mol. Cell. Biol. August 2012 32:3203-3217; published ahead of print 11 June 2012 The young and happy marriage of membrane traffic and cell polarity Barry J Thompson, Franck Perez & Thomas Vaccari EMBO reports (2012), 13, -670 – 672 Meier-Gorlin syndrome mutations disrupt an Orc1 CDK inhibitory domain and cause centrosome reduplication. Hossain M, Stillman B. Genes Dev. 2012 Aug 15;26(16):1797-810. POC1A truncation mutation causes a ciliopathy in humans characterized by primordial dwarfism. Shaheen R, Faqeih E, Shamseldin HE, Noche RR, Sunker A, Alshammari MJ, Al-Sheddi T, Adly N, Al-Dosari MS, Megason SG, Al-Husain M, Al-Mohanna F, Alkuraya FS. Am J Hum Genet. 2012 Aug 10;91(2):330-6 Finding CDK: Linking yeast with humans Paul Nurse Nature Cell Biology 14, 776 (2012) Tubulin nucleotide status controls Sas-4-dependent pericentriolar material recruitment Jayachandran Gopalakrishnan, Yiu-Cheung Frederick Chim, Andrew Ha, Marcus L. Basiri, Dorothy A. Lerit, Nasser M. Rusan & Tomer Avidor-Reiss Nature Cell Biology 14, 865–873 (2012) The MEN mediates the effects of the spindle assembly checkpoint on Kar9-dependent spindle pole body inheritance in budding yeast. Hotz M, Lengefeld J, Barral Y. Cell Cycle. 2012 Aug 15;11(16):3109-16. Small molecule inhibitors of Smoothened ciliary localization and ciliogenesis. Wu VM, Chen SC, Arkin MR, Reiter JF. Proc Natl Acad Sci U S A. 2012 Aug 21;109(34):13644-9.

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Kinocilia Mediate Mechanosensitivity in Developing Zebrafish Hair Cells Katie S. Kindt, Gabriel Finch, Teresa Nicolson Developmental Cell - 14 August 2012 (Vol. 23, Issue 2, pp. 329-341) BLD10/CEP135 Is a Microtubule-Associated Protein that Controls the Formation of the Flagellum Central Microtubule Pair Zita Carvalho-Santos, Pedro Machado, Inês Alvarez-Martins, Susana M. Gouveia, Swadhin C. Jana, Paulo Duarte, Tiago Amado, Pedro Branco, Micael C. Freitas, Sara T.N. Silva, Claude Antony, Tiago M. Bandeiras, Mónica Bettencourt-Dias Developmental Cell - 14 August 2012 (Vol. 23, Issue 2, pp. 412-424) Assembly and Persistence of Primary Cilia in Dividing Drosophila Spermatocytes Maria Giovanna Riparbelli, Giuliano Callaini, Timothy L. Megraw Developmental Cell - 14 August 2012 (Vol. 23, Issue 2, pp. 425-432) Show me your license, please: deregulation of centriole duplication mechanisms that promote amplification. Brownlee CW, Rogers GC. Cell Mol Life Sci. 2012 Aug 15. Clathrin promotes centrosome integrity in early mitosis through stabilization of centrosomal ch-TOG. Foraker AB, Camus SM, Evans TM, Majeed SR, Chen CY, Taner SB, Corrêa IR Jr, Doxsey SJ, Brodsky FM. J Cell Biol. 2012 Aug 20;198(4):591-605. Exome Capture Reveals ZNF423 and CEP164 Mutations, Linking Renal Ciliopathies to DNA Damage Response Signaling Moumita Chaki, et al. Cell, Volume 150, Issue 3 August 3, 2012 http://www.cell.com/abstract/S0092-8674%2812%2900783-0?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=NJZIQ3F:NIY8G1F Meier-Gorlin syndrome mutations disrupt an Orc1 CDK inhibitory domain and cause centrosome reduplication. Hossain M, Stillman B. Genes Dev. 2012 Aug 15;26(16):1797-810. The primary cilium as a multiple cellular signaling scaffold in development and disease. Ko HW. BMB Rep. 2012 Aug;45(8):427-32. PKA and PDE4D3 anchoring to AKAP9 provides distinct regulation of cAMP signals at the centrosome. Terrin A, Monterisi S, Stangherlin A, Zoccarato A, Koschinski A, Surdo NC, Mongillo M, Sawa A, Jordanides NE, Mountford JC, Zaccolo M. J Cell Biol. 2012 Aug 20;198(4):607-21 Dynamics of the primary cilium in shear flow. Young YN, Downs M, Jacobs CR. Biophys J. 2012 Aug 22;103(4):629-39

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Short stature, onychodysplasia, facial dysmorphism, and hypotrichosis syndrome is caused by a POC1A mutation. Sarig O, Nahum S, Rapaport D, Ishida-Yamamoto A, Fuchs-Telem D, Qiaoli L, Cohen-Katsenelson K, Spiegel R, Nousbeck J, Israeli S, Borochowitz ZU, Padalon-Brauch G, Uitto J, Horowitz M, Shalev S, Sprecher E. Am J Hum Genet. 2012 Aug 10;91(2):337-42. Structured illumination of the interface between centriole and peri-centriolar material Jingyan Fu and David M. Glover Open Biol August 2012 Hedgehog-Stimulated Chemotaxis Is Mediated by Smoothened Located Outside the Primary Cilium Maarten F. Bijlsma, Helene Damhofer, Henk Roelink Sci. Signal.5 (238), ra60. [DOI: 10.1126/scisignal.2002798] http://stke.sciencemag.org/cgi/content/abstract/sigtrans;5/238/ra60 The C. elegans F-box proteins LIN-23 and SEL-10 antagonize centrosome duplication by regulating ZYG-1 levels Nina Peel, Michael Dougherty, Jacqueline Goeres, Yan Liu, and Kevin F. O'Connell J Cell Sci 2012;125 3535-3544 http://jcs.biologists.org/cgi/content/abstract/125/15/3535?etoc Novel NEDD1 phosphorylation sites regulate {gamma}-tubulin binding and mitotic spindle assembly Maria Ana Gomez-Ferreria, Mikhail Bashkurov, Andreas O. Helbig, Brett Larsen, Tony Pawson, Anne-Claude Gingras, and Laurence Pelletier J Cell Sci 2012;125 3745-3751 http://jcs.biologists.org/cgi/content/abstract/125/16/3745?etoc Characterization of an apical ceramide-enriched compartment regulating ciliogenesis Qian He, Guanghu Wang, Somsankar Dasgupta, Michael Dinkins, Gu Zhu, and Erhard Bieberich Mol. Biol. Cell August 15, 2012 vol. 23 no. 16 3156-316 07/2012 The SAS-5 N-terminal domain is a tetramer, with implications for centriole assembly in C. elegans. Shimanovskaya E, Qiao R, Lesigang J, Dong G. Worm. 2013 Jul 1 http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3875647/ Mammalian HCA66 protein is required for both ribosome synthesis and centriole duplication Chrystelle Bonnart, Marie Gérus, Coralie Hoareau-Aveilla, Tamás Kiss, Michèle Caizergues-Ferrer, Yves Henry, and Anthony K. Henras Nucleic Acids Res. 2012 July; 40(13): 6270–6289. Towards a molecular architecture of centriole assembly Pierre Gönczy Nature Reviews Molecular Cell Biology 13, 425-435 (July 2012)

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Separase-dependent cleavage of pericentrin B is necessary and sufficient for centriole disengagement during mitosis Kwanwoo Lee and Kunsoo Rhee Cell Cycle. 2012 Jul 1;11(13):2476-85. Axis Formation: Microtubules Push in the Right Direction Siegfried Roth, Jeremy Lynch, Current Biology, Volume 22, Issue 13, 10 July 2012 Calmodulin activation of Aurora-A kinase (AURKA) is required during ciliary disassembly and in mitosis Olga V. Plotnikova, Anna S. Nikonova, Yuri V. Loskutov,Polina Y. Kozyulina, Elena N. Pugacheva, and Erica A. Golemis Mol. Biol. Cell 2012 23:14 2658-2670 The role of the cilium in normal and abnormal cell cycles: emphasis on renal cystic pathologies. Pan J, Seeger-Nukpezah T, Golemis EA. Cell Mol Life Sci. 2012 Jul 11. Systematic Functional Prioritization of Protein Posttranslational Modifications Pedro Beltrao, Véronique Albanèse, Lillian R. Kenner, Danielle L. Swaney, Alma Burlingame, Judit Villén, Wendell A. Lim, James S. Fraser, Judith Frydman, Nevan J. Krogan Cell - 20 July 2012 (Vol. 150, Issue 2, pp. 413-425) New insights into subcomplex assembly and modifications of centrosomal proteins. Habermann K, Lange BM. Cell Div. 2012 Jul 16;7(1):17. doi: 10.1186/1747-1028-7-17. Selective loss of RPGRIP1-dependent ciliary targeting of NPHP4, RPGR and SDCCAG8 underlies the degeneration of photoreceptor neurons H Patil, N Tserentsoodol, A Saha, Y Hao, M Webb and P A Ferreira Cell Death and Disease (2012) 3, e355 DNA damage-induced centrosome amplification occurs via excessive formation of centriolar satellites. Löffler H, Fechter A, Liu FY, Poppelreuther S, Krämer A. Oncogene. 2012 Jul 23. Sds22 and Repo-Man stabilize chromosome segregation by counteracting Aurora B on anaphase kinetochores Claudia Wurzenberger, Michael Held, Michael A. Lampson, Ina Poser, Anthony A. Hyman, and Daniel W. Gerlich JCB vol. 198 no. 2 173-183 http://jcb.rupress.org/content/198/2/173.long CENP-E–dependent BubR1 autophosphorylation enhances chromosome alignment and the mitotic checkpoint Yige Guo, Christine Kim, Sana Ahmad, Jiayin Zhang, and Yinghui Mao JCB vol. 198 no. 2 205-217 http://jcb.rupress.org/content/198/2/205.long

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Early, nonciliary role for microtubule proteins in left–right patterning is conserved across kingdoms Maria Lobikina, Gang Wangc, Jingsong Xuc, Yi-Wen Hsiehd, Chiou-Fen Chuangd, Joan M. Lemirea, and Michael Levina, PNAS July 31, 2012 vol. 109 no. 31 12586-12591 Transcriptional consequences of aneuploidy Jason M. Sheltzera, Eduardo M. Torresa, Maitreya J. Dunhamc, and Angelika Amona PNAS July 31, 2012 vol. 109 no. 31 12644-12649 A Wnt/beta-catenin pathway antagonist Chibby binds Cenexin at the distal end of mother centrioles and functions in primary cilia formation. Steere N, Chae V, Burke M, Li FQ, Takemaru K, Kuriyama R. PLoS One. 2012;7(7):e41077. Never tear us apart--the importance of centrosome clustering. Marthiens V, Piel M, Basto R. J Cell Sci. 2012 Jul 15;125(Pt 14):3281-92 PF19 encodes the p60 catalytic subunit of katanin and is required for assembly of the flagellar central apparatus in Chlamydomonas Erin E. Dymek and Elizabeth F. Smith J Cell Sci 2012;125 3357-3366 http://jcs.biologists.org/cgi/content/abstract/125/14/3357?etoc Polo-like kinase is necessary for flagellum inheritance in Trypanosoma brucei Kyojiro N. Ikeda and Christopher L. de Graffenried July 1, 2012 J Cell Sci 125, 3173-3184 06/2012 Centrosomes in the zebrafish (Danio rerio): a review including the related basal body. Lessman CA. Cilia. 2012 Jun 7 http://www.ciliajournal.com/content/1/1/9 The base of the cilium: roles for transition fibres and the transition zone in ciliary formation, maintenance and compartmentalization Jeremy F Reiter, Oliver E Blacque & Michel R Leroux EMBO. 1 June 2012; doi:10.1038/embor.2012.73 URL: http://www.nature.com/embor/journal/vaop/ncurrent/full/embor201273a.html RhoD participates in the regulation of cell-cycle progression and centrosome duplication A Kyrkou, M Soufi, R Bahtz, C Ferguson, M Bai, R G Parton, I Hoffmann, M Zerial, T Fotsis, and C Murphy Oncogene 2012 URL: http://www.nature.com/onc/journal/vaop/ncurrent/full/onc2012195a.html Ciliary transition zone (TZ) proteins RPGR and CEP290: role in photoreceptor cilia and degenerative diseases Manisha Anand & Hemant Khanna

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June 2012, Vol. 16, No. 6 , Pages 541-551 Functional Repurposing Revealed by Comparing S. pombe and S. cerevisiae Genetic Interactions Adam Frost, Marc G. Elgort, Onn Brandman, Clinton Ives, Sean R. Collins, Lakshmi Miller-Vedam, Jimena Weibezahn, Marco Y. Hein, Ina Poser, Matthias Mann, Anthony A. Hyman, Jonathan S. Weissman, Cell, Volume 149, Issue 6, 8 June 2012, Pages 1339-1352 Labeling and Identification of Direct Kinase Substrates Scott M. Carlson and Forest M. White Sci. Signal. 2012. 5 (227), pl3. URL: http://stke.sciencemag.org/cgi/content/abstract/sigtrans;5/227/pl3 CSAP localizes to polyglutamylated microtubules and promotes proper cilia function and zebrafish development Chelsea B. Backer, Jennifer H. Gutzman, Chad G. Pearson, and Iain M. Cheesemana Mol Biol Cell. 2012 June 1; 23(11): 2122–2130. http://www.molbiolcell.org/cgi/content/abstract/23/11/2122?etoc Spindle checkpoint–independent inhibition of mitotic chromosome segregation by Drosophila Mps1 Friederike Althoff, Roger E. Karess, and Christian F. Lehner Mol. Biol. Cell 2012 23:12 2275-2291 Constitutive dynein activity in she1 mutants reveals differences in microtubule attachment at the yeast spindle pole body Zane J. Bergman, Xue Xia, I. Alexandra Amaro, and Tim C. Huffaker Mol. Biol. Cell 2012 23:12 2319-2326

The Centrosomal Kinase Plk1 Localizes to the Transition Zone of Primary Cilia and Induces Phosphorylation of Nephrocystin-1 Tamina Seeger-Nukpezah, Max C. Liebau, Katja Höpker, Tobias Lamkemeyer, Thomas Benzing, Erica A. Golemis, and Bernhard Schermer PLoS One. 2012; 7(6): e38838.

Scoring a backstage pass: Mechanisms of ciliogenesis and ciliary access Francesc R. Garcia-Gonzalo and Jeremy F. Reiter JCB vol. 197 no. 6 697-709 RNA in centrosomes: Structure and possible functions. Chichinadze K, Lazarashvili A, Tkemaladze J. Protoplasma. 2012 Jun 10. miR-129-3p controls cilia assembly by regulating CP110 and actin dynamics. Cao J, Shen Y, Zhu L, Xu Y, Zhou Y, Wu Z, Li Y, Yan X, Zhu X. Nat Cell Biol. 2012 Jun 10;14(7):697-706. Multisite phosphoregulation of Cdc25 activity refines the mitotic entrance and exit switches Lucy X. Lu, Maria Rosa Domingo-Sananes, Malwina Huzarska, Bela Novak, and Kathleen L. Gould PNAS June 19, 2012 vol. 109 no. 25 9899-9904

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Spatial Positive Feedback at the Onset of Mitosis Silvia D.M. Santos, Roy Wollman, Tobias Meyer, James E. Ferrell Cell - 22 June 2012 (Vol. 149, Issue 7, pp. 1500-1513) A Phage Tubulin Assembles Dynamic Filaments by an Atypical Mechanism to Center Viral DNA within the Host Cell James A. Kraemer, Marcella L. Erb, Christopher A. Waddling, Elizabeth A. Montabana, Elena A. Zehr, Hannah Wang, Katrina Nguyen, Duy Stephen L. Pham, David A. Agard, Joe Pogliano Cell - 22 June 2012 (Vol. 149, Issue 7, pp. 1488-1499) The IFT-A complex regulates Shh signaling through cilia structure and membrane protein trafficking Karel F. Liem Jr., Alyson Ashe, Mu He, Peter Satir, Jennifer Moran, David Beier, Carol Wicking, and Kathryn V. Anderson JCB vol. 197 no. 6 789-800 Cyclin-Dependent Kinase 8 Regulates Mitotic Commitment in Fission Yeast Zsolt Szilagyi, Gabor Banyai, Marcela Davila Lopez, Christopher J. McInerny, and Claes M. Gustafsson Mol. Cell. Biol. June 2012 32:2099-2109. URL: http://mcb.asm.org/content/early/2012/03/20/MCB.06316-11 STED microscopy with optimized labeling density reveals 9-fold arrangement of a centriole protein. Lau L, Lee YL, Sahl SJ, Stearns T, Moerner WE. Biophys J. 2012 Jun 20;102(12):2926-35. Microtubule-severing enzymes at the cutting edge David J. Sharp and Jennifer L. Ross J Cell Sci 2012 125:2561-2569 Advances in high-resolution imaging – techniques for three-dimensional imaging of cellular structures Diane S. Lidke and Keith A. Lidke J Cell Sci 2012 125:2571-2580 Ciliogenesis in Caenorhabditis elegans requires genetic interactions between ciliary middle segment localized NPHP-2 (inversin) and transition zone-associated proteins Simon R. F. Warburton-Pitt, Andrew R. Jauregui, Chunmei Li, Juan Wang,Michel R. Leroux, and Maureen M. Barr J Cell Sci 2012 125:2592-2603 TIG3 interaction at the centrosome alters microtubule distribution and centrosome function Tiffany M. Scharadin, Haibing Jiang, Stuart Martin, and Richard L. Eckert J Cell Sci 2012 125:2604-2614 Genomics: The breast cancer landscape Joe Gray & Brian Druker Nature 486, 328–329 (21 June 2012) Microtubule assembly during mitosis – from distinct origins to distinct functions? Sylvain Meunier and Isabelle Vernos

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June 15, 2012 J Cell Sci 125, 2805-2814 CPAP is required for cilia formation in neuronal cells. Wu KS, Tang TK. Biol Open. 2012 Jun 15;1(6):559-65. Mechanism for Astral Microtubule Capture by Cortical Bud6p Priming Spindle Polarity in S. cerevisiae Rogier ten Hoopen, Cristina Cepeda-García, Rosario Fernández-Arruti, M. Angeles Juanes, Nathalie Delgehyr, Marisa Segal Current Biology - 19 June 2012 (Vol. 22, Issue 12, pp. 1075-1083) http://www.sciencedirect.com/science/article/pii/S0960982212004794 05/2012 Cilia, Wnt signaling, and the cytoskeleton. May-Simera HL, Kelley MW. Cilia. 2012 May 2;1(1):7. doi: 10.1186/2046-2530-1-7. http://www.ciliajournal.com/content/1/1/7 Exploring the Yeast Acetylome Using Functional Genomics Supipi Kaluarachchi Duffy, Helena Friesen, Anastasia Baryshnikova, Jean-Philippe Lambert, Yolanda T. Chong, Daniel Figeys, Brenda Andrews Cell http://www.sciencedirect.com/science/article/pii/S0092867412004175 Computer-assisted image analysis of human cilia and Chlamydomonas flagella reveals both similarities and differences in axoneme structure Eileen T. O'Toole, Thomas H. Giddings Jr., Mary E. Porter and Lawrence E. Ostrowski Cytoskeleton http://onlinelibrary.wiley.com/doi/10.1002/cm.21035/abstract Calmodulin activation of Aurora-A (AURKA) is required during ciliary disassembly and in mitosis. Plotnikova OV, Nikonova AS, Loskutov YV, Kozyulina PY, Pugacheva EN, Golemis EA. Mol Biol Cell. 2012 May 23. URL: http://www.molbiolcell.org/content/early/2012/05/21/mbc.E11-12-1056.abstract Association of TCTP with Centrosome and Microtubules Mariusz K. Jaglarz, Franck Bazile, Katarzyna Laskowska, Zbigniew Polanski, Franck Chesnel, Ewa Borsuk, Malgorzata Kloc and Jacek Z. Kubiak Biochem Res Int. 2012 URL: http://www.hindawi.com/journals/bcri/2012/541906/cta/ Using the Genetics Concept Assessment to Document Persistent Conceptual Difficulties in Undergraduate Genetics Courses Michelle K. Smith and Jennifer K. Knight Genetics. May 2012 191:21-32 URL: http://www.genetics.org/content/191/1/21.abstract Nuclear envelope insertion of spindle pole bodies and nuclear pore complexes Sue L. Jaspersen and Suman Ghosh

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Nucleus. 2012 May 1; 3(3): 226–236. Kendrin Is a Novel Substrate for Separase Involved in the Licensing of Centriole Duplication Kazuhiko Matsuo, Keita Ohsumi, Mari Iwabuchi, Toshio Kawamata, Yoshitaka Ono, Mikiko Takahashi Current Biology - 22 May 2012 (Vol. 22, Issue 10, pp. 915-921) Analysis of centriole elimination during C. elegans oogenesis Tamara Mikeladze-Dvali, Lukas von Tobel, Petr Strnad, Graham Knott, Heinrich Leonhardt, Lothar Schermelleh and Pierre Gönczy Development, May 1, 2012139, 1670-1679. Polo-like kinase 4 controls centriole duplication but does not directly regulate cytokinesis Andrew J. Hollanda, Daniele Fachinettia, Sandrine Da Cruza,b, Quan Zhuc, Benjamin Vitrea, Mariana Lince-Fariad, Denaly Chena, Nicole Parisha, Inder M. Vermac, Monica Bettencourt-Diasd, and Don W. Clevelanda, Mol. Biol. Cell May 15, 2012 vol. 23 no. 10 1838-1845 Spindle pole body components are reorganized during fission yeast meiosis Midori Ohtaa, Masamitsu Satoa, and Masayuki Yamamotoa Mol. Biol. Cell May 15, 2012 vol. 23 no. 10 1799-1811 Sub-diffraction imaging on standard microscopes through photobleaching microscopy with non-linear processing Sebastian Munck, Katarzyna Miskiewicz, Ragna Sannerud, Silvia A. Menchon, Liya Jose, Rainer Heintzmann, Patrik Verstreken, and Wim Annaert J Cell Sci 2012;125 2257-2266 http://jcs.biologists.org/cgi/content/abstract/125/9/2257?etoc LATS1/WARTS phosphorylates MYPT1 to counteract PLK1 and regulate mammalian mitotic progression Tatsuyuki Chiyoda, Naoyuki Sugiyama, Takatsune Shimizu, Hideaki Naoe, Yusuke Kobayashi, Jo Ishizawa, Yoshimi Arima, Hiroshi Tsuda, Masaaki Ito, Kozo Kaibuchi, Daisuke Aoki, Yasushi Ishihama, Hideyuki Saya, and Shinji Kuninaka JCB vol. 197 no. 5 625-641 Role of phosphorylation of Cdc20 in p31comet-stimulated disassembly of the mitotic checkpoint complex Shirly Miniowitz-Shemtov1, Esther Eytan1, Dvora Ganoth, Danielle Sitry-Shevah, Elena Dumin, and Avram Hershko2 PNAS May 22, 2012 vol. 109 no. 21 8056-8060 A truncating mutation of CEP135 causes primary microcephaly and disturbed centrosomal function. Hussain MS, Baig SM, Neumann S, Nürnberg G, Farooq M, Ahmad I, Alef T, Hennies HC, Technau M, Altmüller J, Frommolt P, Thiele H, Noegel AA, Nürnberg P. Am J Hum Genet. 2012 May 4;90(5):871-8. Identification of a novel Wnt5a–CK1ε–Dvl2–Plk1-mediated primary cilia disassembly pathway

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Kyung Ho Lee, Yoshikazu Johmura, Li-Rong Yu, Jung-Eun Park, Yuan Gao, Jeong K Bang, Ming Zhou, Timothy D Veenstra, Bo Yeon Kim and Kyung S Lee The EMBO Journal (2012), 31, 3104 - 3117; 10.1038/emboj.2012.144 04/2012 Loss of Cyclin-Dependent Kinase 2 (CDK2) Inhibitory Phosphorylation in a CDK2AF Knock-In Mouse Causes Misregulation of DNA Replication and Centrosome Duplication Hui Zhao, Xueyan Chen, Mark Gurian-West, and James M. Roberts Mol. Cell. Biol. 2012;32 1421-1432 http://mcb.asm.org/cgi/content/abstract/32/8/1421?etoc Differential regulation of node formation, nodal ciliogenesis and cilia positioning by Noto and Foxj1 Leonie Alten, Karin Schuster-Gossler, Anja Beckers, Stephanie Groos, Barbel Ulmer, Jan Hegermann, Matthias Ochs, and Achim Gossler http://jcs.biologists.org/cgi/content/full/125/7/e1?etoc Trichoplein keeps primary cilia silent Ben Short Study identifies a centriolar protein that activates Aurora A to suppress ciliogenesis in proliferating cells. JCB vol. 197 no. 3 341 http://jcb.rupress.org/content/197/3/341.full Trichoplein and Aurora A block aberrant primary cilia assembly in proliferating cells Akihito Inoko, Makoto Matsuyama, Hidemasa Goto, Yuki Ohmuro-Matsuyama,Yuko Hayashi,Masato Enomoto, Miho Ibi, Takeshi Urano, Shigenobu Yonemura, Tohru Kiyono, Ichiro Izawa,and Masaki Inagaki JCB vol. 197 no. 3 391-405 http://jcb.rupress.org/content/197/3/391.abstract An intrinsically disordered yeast prion arrests the cell cycle by sequestering a spindle pole body component Sebastian Treusch and Susan Lindquist Promiscuous interactions of the intrinsically disordered Rnq1 prion protein with the spindle pole body component Spc42 result in Spc42’s sequestration in insoluble bodies and cell cycle arrest. JCB vol. 197 no. 3 369-379 http://jcb.rupress.org/content/197/3/369.full Cell Polarity: Centrosomes Release Signals for Polarization Eisuke Sumiyoshi, Asako Sugimoto Current Biology, Volume 22, Issue 8, 24 April 2012 http://www.sciencedirect.com/science/article/pii/S0960982212002667 The 2.8 Å crystal structure of the dynein motor domain Takahide Kon, Takuji Oyama, Rieko Shimo-Kon, Kenji Imamula, Tomohiro Shima et al. Nature 484, 345-350 (19 Apri 2012) http://www.nature.com/nature/journal/v484/n7394/full/nature10955.html Transient Structure Associated with the Spindle Pole Body Directs Meiotic Microtubule

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Reorganization in S. pombe C. Funaya, S. Samarasinghe, S. Pruggnaller, M. Ohta, Y. Connolly, J. Müller, H. Murakami, A. Grallert, M. Yamamoto, D. Smith, C. Antony, and K. Tanaka Current Biology, Volume 22, Issue 7. April 10, 2012 http://www.cell.com/current-biology/abstract/S0960-9822%2812%2900193-5 Checkpoint-Independent Stabilization of Kinetochore-Microtubule Attachments by Mad2 in Human Cells L. Kabeche and D.A. Compton Current Biology, Volume 22, Issue 7. April 10, 2012 http://www.cell.com/current-biology/abstract/S0960-9822(12)00181-9?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=35TUB3F:NIY8G1F Dynein Tethers and Stabilizes Dynamic Microtubule Plus Ends A.G. Hendricks, J.E. Lazarus, E. Perlson, M.K. Gardner, D.J. Odde, Y.E. Goldman, and E.L.F. Holzbaur Current Biology, Volume 22, Issue 7. April 10, 2012 http://www.cell.com/current-biology/abstract/S0960-9822(12)00172-8?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=35TUB3F:NIY8G1F Microtubule Organization: A Pericentriolar Material-Like Structure in Yeast Meiosis A. Dammermann, L. Cipak, and J. Gregan Current Biology, Volume 22, Issue 7. April 10, 2012 http://www.cell.com/current-biology/abstract/S0960-9822(12)00187-X?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=35TUB3F:NIY8G1F Chromosomal Instability: Mad2 beyond the Spindle Checkpoint E.R. Ballister and M.A. Lampson Current Biology, Volume 22, Issue 7. April 10, 2012 http://www.cell.com/current-biology/abstract/S0960-9822(12)00246-1?utm_source=ECE001&utm_campaign=&utm_content=&utm_medium=email&bid=35TUB3F:NIY8G1F Drosophila chibby is required for basal body formation and ciliogenesis but not for Wg signaling Camille Enjolras, Joëlle Thomas, Brigitte Chhin, Elisabeth Cortier, Jean-Luc Duteyrat, Fabien Soulavie, Maurice J. Kernan, Anne Laurençon, and Bénédicte Durand J Cell Biol. 2012 April 16; 197(2): 313–325. Structure of the mitotic checkpoint complex William C. H. Chao, Kiran Kulkarni, Ziguo Zhang, Eric H. Kong & David Barford Nature 484, 208–213 (12 April 2012) http://www.nature.com/nature/journal/v484/n7393/full/nature10896.html

Mitotic Spindle Form and Function Mark Winey and Kerry Bloom Genetics April 2012 190:1197-1224 http://www.genetics.org/content/190/4/1197.abstract The ciliary transition zone: from morphology and molecules to medicine

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Peter G. Czarnecki, Jagesh V. Shah Trends in Cell Biology, Volume 22, Issue 4, 201-210, 1 April 2012 http://www.cell.com/trends/cell-biology//retrieve/pii/S0962892412000165?_returnURL=http://linkinghub.elsevier.com/retrieve/pii/S0962892412000165?showall=true {gamma}-Tubulin stands up to be counted Ben Short J. Cell Biol. 2012;197 2, Published online Apr 2 2012, http://jcb.rupress.org/cgi/content/full/197/1/2-a?etoc Ewald Weibel: An organelle of his very own, and more Caitlin Sedwick J. Cell Biol. 2012;197 4-5 Weibel built his career using electron microscopy to study cells, tissues, and biological systems. JCB vol. 197 no. 1 4-5 http://jcb.rupress.org/cgi/content/full/197/1/4?etoc An extended {gamma}-tubulin ring functions as a stable platform in microtubule nucleation Sarah Erlemann, Annett Neuner, Linda Gombos, Romain Gibeaux, Claude Antony, and Elmar Schiebel J. Cell Biol. 2012;197 59-74 http://jcb.rupress.org/content/197/1/59.abstract?etoc Sensing microtubule dynamics Christina Karlsson Rosenthal Nature Cell Biology 14, 342 (2012) URL: http://www.nature.com/ncb/journal/v14/n4/full/ncb2479.html?WT.ec_id=NCB-201204 Dissecting Spindle Architecture with a Laser Pierre Recouvreux, Marileen Dogterom Cell, Volume 149, Issue 3, 27 April 2012 http://www.sciencedirect.com/science/article/pii/S0092867412004655 Nucleation and Transport Organize Microtubules in Metaphase Spindles Jan Brugués, Valeria Nuzzo, Eric Mazur, Daniel J. Needleman Cell, Volume 149, Issue 3, 27 April 2012 http://www.sciencedirect.com/science/article/pii/S0092867412004102 An MBoC Favorite: Functional coordination of three mitotic motors in Drosophila embryos Alex Mogilner http://www.molbiolcell.org/content/23/8/1401.full?etoc Centrosome misorientation mediates slowing of the cell cycle under limited nutrient conditions in Drosophila male germline stem cells Therese M. Rotha, C.-Y. Ason Chianga, Mayu Inabaa, Hebao Yuana, Viktoria Salzmanna, Caitlin E. Rotha, and Yukiko M. Yamashitaa, http://www.molbiolcell.org/content/23/8/1524.abstract?etoc

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Sensitive kinase assay linked with phosphoproteomics for identifying direct kinase substrates. Xue L, Wang WH, Iliuk A, Hu L, Galan JA, Yu S, Hans M, Geahlen RL, Tao WA. PNAS 2012 Apr 10;109(15):5615-20. URL: http://www.pnas.org/content/early/2012/03/21/1119418109 Mitotic Spindle Form and Function Mark Winey and Kerry Bloom Genetics April 1, 2012 vol. 190 no. 4 1197-1224 Breaking the ties that bind: New advances in centrosome biology Balca R. Mardin and Elmar Schiebel J Cell Biol. 2012 April 2; 197(1): 11–18. Combining Cep290 and Mkks ciliopathy alleles in mice rescues sensory defects and restores ciliogenesis Rivka A. Rachel, Helen L. May-Simera, Shobi Veleri, Norimoto Gotoh, Byung Yoon Choi, Carlos Murga-Zamalloa, Jeremy C. McIntyre, Jonah Marek, Irma Lopez, Alice N. Hackett, Matthew Brooks, Anneke I. den Hollander, Philip L. Beales, Tiansen Li, Samuel G. Jacobson, Raman Sood, Jeffrey R. Martens, Paul Liu, Thomas B. Friedman, Hemant Khanna, Robert K. Koenekoop, Matthew W. Kelley, and Anand Swaroop J Clin Invest. 2012 April 2; 122(4): 1233–1245. Cep70 contributes to angiogenesis by modulating microtubule rearrangement and stimulating cell polarization and migration Xingjuan Shi, Min Liu, Dengwen Li, Jun Wang, Ritu Aneja and Jun Zhou Volume 11, Issue 8 April 15, 2012 Short-Term Integration of Cdc25 Dynamics Controls Mitotic Entry during Drosophila Gastrulation Stefano Di Talia, Eric F. Wieschaus Developmental Cell - 17 April 2012 (Vol. 22, Issue 4, pp. 763-774) Ciliary and Nuclear Transport: Different Places, Similar Routes? Samson O. Obado, Michael P. Rout Developmental Cell - 17 April 2012 (Vol. 22, Issue 4, pp. 693-694) 03/2012 Multiple domains of human CLASP contribute to microtubule dynamics and organization in vitro and in Xenopus egg extracts. Patel, K., Nogales, E. and Heald, R. Cytoskeleton, 69: 155–165 (2012) http://onlinelibrary.wiley.com/doi/10.1002/cm.21005/abstract Focused ion beam micromachining of eukaryotic cells for cryoelectron tomography Alexander Rigort, Felix J. B. Bäuerlein, Elizabeth Villa, Matthias Eibauer, Tim Laugks, Wolfgang Baumeister, and Jürgen M. Plitzko PNAS 2012 109 (12) 4449-4454 http://www.pnas.org/content/early/2012/03/02/1201333109

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Bub1 Kinase and Sgo1 Modulate Pericentric Chromatin in Response to Altered Microtubule Dynamics J. Haase, A. Stephens, J. Verdaasdonk, E. Yeh, and K. Bloom Current Biology - 20 March 2012 (Vol. 22, Issue 6, pp. 471-481) A conserved role for COMA/CENP-H/I/N kinetochore proteins in the spindle checkpoint Daniel R. Matson, Pinar B. Demirel, P. Todd Stukenberg, and Daniel J. Burke Genes Dev. March 15, 2012 26: 542-547 Proteomic Analysis of Mammalian Primary Cilia H. Ishikawa, J. Thompson, J.R. Yates III, and W.F. Marshall Current Biology, Volume 22, Issue 5, 6 March 2012 Spindle Pole Bodies Exploit the Mitotic Exit Network in Metaphase to Drive Their Age-Dependent Segregation M. Hotz, C. Leisner, D. Chen, C. Manatschal, T. Wegleiter, J. Ouellet, D. Lindstrom, D.E. Gottschling, J. Vogel, and Y. Barral Cell, Volume 148, Issue 5, 958-972, 2 March 2012 Systematic survey of deubiquitinase localization identifies USP21 as a regulator of centrosome- and microtubule-associated functions Sylvie Urbe, Han Liu, Sebastian D. Hayes, Claire Heride, Daniel J. Rigden, and Michael J. Clague Mol. Biol. Cell 2012;23 1095-1103 http://www.molbiolcell.org/cgi/content/abstract/23/6/1095?etoc Cell-cycle-regulated expression of STIL controls centriole number in human cells Christian Arquint, Katharina F. Sonnen, York-Dieter Stierhof, and Erich A. Nigg J Cell Sci 2012;125 1342-1352 http://jcs.biologists.org/cgi/content/abstract/125/5/1342?etoc STIL is required for centriole duplication in human cells Julia Vulprecht, Ahuvit David, Alexandra Tibelius, Asher Castiel, Gleb Konotop, Fengying Liu, Felix Bestvater, Marc S. Raab, Hanswalter Zentgraf, Shai Izraeli, and Alwin Kramer J Cell Sci 2012;125 1353-1362 http://jcs.biologists.org/cgi/content/abstract/125/5/1353?etoc

A size-exclusion permeability barrier and nucleoporins characterize a ciliary pore complex that regulates transport into cilia Hooi Lynn Kee, John F. Dishinger, T. Lynne Blasius, Chia-Jen Liu, Ben Margolis & Kristen J. Verhey Nature Cell Biology 14, 431–437 (2012) http://www.nature.com/ncb/journal/v14/n4/full/ncb2450.html?WT.ec_id=NCB-201204 Mutations in axonemal dynein assembly factor DNAAF3 cause primary ciliary dyskinesia Hannah M Mitchison, Miriam Schmidts, Niki T Loges, Judy Freshour, Athina Dritsoula, Rob A Hirst, Christopher O'Callaghan, Hannah Blau, Maha Al Dabbagh, Heike Olbrich, Philip L Beales, Toshiki Yagi, Huda Mussaffi, Eddie M K Chung, Heymut Omran & David R Mitchell Nature Genetics 44, 381–389 (2012) http://www.nature.com/ng/journal/v44/n4/full/ng.1106.html

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Neurl4, a novel daughter centriole protein, prevents formation of ectopic microtubule organizing centres Ji Li, Sehyun Kim, Tetsuo Kobayashi, Feng-Xia Liang, Nina Korzeniewski, Stefan Duensing & Brian D Dynlacht EMBO reports 13, 547 - 553 (23 March 2012) Klp10A, a microtubule-depolymerizing kinesin-13, cooperates with CP110 to control Drosophila centriole length. Delgehyr N, Rangone H, Fu J, Mao G, Tom B, Riparbelli MG, Callaini G, Glover DM. Curr Biol. 2012 Mar 20;22(6):502-9. TPPP acts downstream of RhoA–ROCK–LIMK2 to regulate astral microtubule organization and spindle orientation Yi-Wen Heng, Hong-Hwa Lim, Theresia Mina, Prayudi Utomo, Shaoping Zhong, Chwee-Teck Lim and Cheng-Gee Koh March 15, 2012 J Cell Sci 125, 1579-1590 Structure–function relationship of the Polo-like kinase in Trypanosoma brucei Zhonglian Yu, Yi Liu and Ziyin Li March 15, 2012 J Cell Sci 125, 1519-1530 Spindle Pole Bodies Exploit the Mitotic Exit Network in Metaphase to Drive Their Age-Dependent Segregation Manuel Hotz, Christian Leisner, Daici Chen, Cristina Manatschal, Thomas Wegleiter, Jimmy Ouellet, Derek Lindstrom, Dan E. Gottschling, Jackie Vogel, Yves Barral Cell - 2 March 2012 (Vol. 148, Issue 5, pp. 958-972) 02/2012 A unique series of reversibly switchable fluorescent proteins with beneficial properties for various applications Hao Chang, Mingshu Zhang, Wei Ji, Juanjuan Chen, Yongdeng Zhang, Bei Liu,Jingze Lu,Junlong Zhang, Pingyong Xu, and Tao Xu PNAS 2012 109 (12) 4455-4460 http://www.pnas.org/content/early/2012/02/17/1113770109.abstract Chromosome- and spindle-pole-derived signals generate an intrinsic code for spindle position andorientation Tomomi Kiyomitsu and Iain M. Cheeseman Nature Cell Biology 14, 311–317 (2012) http://www.nature.com/ncb/journal/v14/n3/full/ncb2440.html Evolutionarily Assembled cis-Regulatory Module at a Human Ciliopathy Locus Jeong Ho Lee et al. Science 24 February 2012: Vol. 335 no. 6071 http://www.sciencemag.org/content/335/6071/966

CLASPs prevent irreversible multipolarity by ensuring spindle-pole resistance to traction forces during chromosome alignment Elsa Logarinho, Stefano Maffini, Marin Barisic, Andrea Marques, Alberto Toso, Patrick Meraldi and Helder Maiato Nature Cell Biology 14, 295–303 (2012)

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The microtubule poison vinorelbine kills cells independently of mitotic arrest and targets cells lacking the APC tumour suppressor more effectively Daniel M. Klotz, Scott A. Nelson, Karin Kroboth, Ian P. Newton, Sorina Radulescu, Rachel A. Ridgway, Owen J. Sansom, Paul L. Appleton and Inke S. Näthke http://jcs.biologists.org/content/125/4/887.abstract?etoc Kinetochores accelerate centrosome separation to ensure faithful chromosome segregation Nunu Mchedlishvili1, Samuel Wieser, René Holtackers, Julien Mouysset, Mukta Belwal, Ana C. Amaro and Patrick Meraldi http://jcs.biologists.org/content/125/4/906.abstract?etoc Plk2 regulates centriole duplication through phosphorylation-mediated degradation of Fbxw7 (human Cdc4) Onur Cizmecioglu, Annekatrin Krause, Ramona Bahtz, Lena Ehret, Nisar Malek and Ingrid Hoffmann http://jcs.biologists.org/content/125/4/981.abstract?etoc 01/2012 The Centrosome in Cells and Organisms Michel Bornens Science 27 January 2012: Vol. 335 no. 6067 http://www.sciencemag.org/content/335/6067/422.full Centrosome Loss in the Evolution of Planarians Juliette Azimzadeh, Mei Lie Wong, Diane Miller Downhour, Alejandro Sánchez Alvarado, Wallace F. Marshall Science 27 January 2012: Vol. 335 no. 6067 pp. 461-463 http://www.sciencemag.org/content/335/6067/461.full The role of clathrin in mitotic spindle organisation Stephen J. Royle http://jcs.biologists.org/content/125/1/19.abstract?etoc Is cohesin required for spindle-pole-body/centrosome cohesion? Hui Jin, Martin Avey, and Hong-Guo Yu Commun Integr Biol. 2012 January 1; 5(1): 26–29. Mob1: defining cell polarity for proper cell division Alexandra Tavares, Joao Goncalves, Claudia Florindo, Alvaro A. Tavares, and Helena Soares J Cell Sci 2012;125 516-527 http://jcs.biologists.org/cgi/content/abstract/125/2/516?etoc Direct role of Bardet-Biedl syndrome proteins in transcriptional regulation Cecilia Gascue, Perciliz L. Tan, Magdalena Cardenas-Rodriguez, Gabriela Libisch, Tamara Fernandez-Calero, Yangfan P. Liu, Soledad Astrada, Carlos Robello, Hugo Naya, Nicholas Katsanis, and Jose L. Badano J Cell Sci 2012;125 362-375 http://jcs.biologists.org/cgi/content/abstract/125/2/362?etoc

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2011 A novel GRK2/HDAC6 interaction modulates cell spreading and motility Vanesa Lafarga, Ivette Aymerich, Olga Tapia, Federico Mayor Jr and Petronila Penela http://www.nature.com/emboj/journal/v31/n4/abs/emboj2011466a.html?WT.ec_id=EMBOJ-20120215 “Classic” 1995 Force Generation by Microtubule Assembly/Disassembly in Mitosis and Related Movements Shinya Inoué and Edward D. Salmon Mol Biol Cell. 1995 December; 6(12): 1619–1640.