prokaryotes vs eukaryotes. ii. rna modification 5” cap chemically speaknig

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Prokaryotes vs Eukaryotes

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Page 2: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

II. RNA modification

Page 3: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

5” cap chemically speaknig

Page 4: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

The movie – yes there is a movie

• http://vcell.ndsu.nodak.edu/animations/mrnaprocessing/movie.htm

Page 5: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

III Bacteria genetics

• Binary fission

Page 6: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Prokaryotic variation in genetic make-up

• Mutations

• Genetic recombination– Transformation– Transduction– Conjugation

Page 7: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Transformation

Page 8: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Transduction

Page 9: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Conjugation

Page 10: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

IV. Control of metabolic pathways

A. Two ways1. Vary the activity of the enzymes (inhibit

them or promote their ability) – feedback inhibition pathways

2. Vary the # of enzymes present – regulate enzyme production at the gene expression level

Page 11: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

B. Gene regulation in bacteria

• OPERONS!– Need to know that an operon is a section of

DNA that contains genes for a protein– Need to know the parts and players

Page 12: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Ex 1 – Lac Operon

Page 13: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Ex 2 Tryptophan operon

Page 14: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

A closer look at the parts

• A) promoter – site on DNA where RNA polymerase can bind and begin transcription

• B) operator – the “on/off” switch, located between promoter and structural genes

• C) structural genes – genes that code for a protein

Page 15: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

Important players

• Repressor – a protein that when active will bind to the operator thus blocking transcription

• Regulatory gene – the DNA sequence that codes for the repressor protein

• Co-repressor – a molecule that attaches to an inactive repressor and makes it active

• Inducer – a molecule that attaches to an active repressor and makes it inactive

Page 16: Prokaryotes vs Eukaryotes. II. RNA modification 5” cap chemically speaknig

How they work together

• Negative regulation

• Positive regulation

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