membrane transport chapter 11. transcellular transport of glucose

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Membrane Transport Chapter 11

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Page 1: Membrane Transport Chapter 11. Transcellular transport of glucose

Membrane Transport

Chapter 11

Page 2: Membrane Transport Chapter 11. Transcellular transport of glucose

Transcellular transport of glucose

Page 3: Membrane Transport Chapter 11. Transcellular transport of glucose

The Na+ - K+ pump is an ATPase

Page 4: Membrane Transport Chapter 11. Transcellular transport of glucose

Response of red blood cells to changes in osmolarity of extra cellular fluids

Page 5: Membrane Transport Chapter 11. Transcellular transport of glucose

Distribution of phospholipids and glycolipids in the lipid bilayer of human red blood cells

Page 6: Membrane Transport Chapter 11. Transcellular transport of glucose

Few Ions are required to cause a large change in membrane potential

Page 7: Membrane Transport Chapter 11. Transcellular transport of glucose

Electrochemical gradient vs. membrane potential

Can work additively or against each other

Page 8: Membrane Transport Chapter 11. Transcellular transport of glucose

Selectivity of a K+ channel

Page 9: Membrane Transport Chapter 11. Transcellular transport of glucose
Page 10: Membrane Transport Chapter 11. Transcellular transport of glucose

Ion Channels fluctuate between closed and open conformations

Page 11: Membrane Transport Chapter 11. Transcellular transport of glucose

Gating of K+ channel

Page 12: Membrane Transport Chapter 11. Transcellular transport of glucose

Gating of Ion Channels

Page 13: Membrane Transport Chapter 11. Transcellular transport of glucose

A Typical Vertebrate Neuron

Page 14: Membrane Transport Chapter 11. Transcellular transport of glucose

Ball and Chain Model of Rapid inactivation of ion channel

Page 15: Membrane Transport Chapter 11. Transcellular transport of glucose

Changes in Na+ channels and the action potential

Page 16: Membrane Transport Chapter 11. Transcellular transport of glucose

Changes in Na+ channels and the action potential

Page 17: Membrane Transport Chapter 11. Transcellular transport of glucose
Page 18: Membrane Transport Chapter 11. Transcellular transport of glucose

Myelination

Page 19: Membrane Transport Chapter 11. Transcellular transport of glucose

Schwann cells and myelination of axons

Page 20: Membrane Transport Chapter 11. Transcellular transport of glucose

Patch Clamp Recording

Page 21: Membrane Transport Chapter 11. Transcellular transport of glucose

Patch Clamp Recording

Page 22: Membrane Transport Chapter 11. Transcellular transport of glucose

Patch Clamp Measurements of single voltage gated Na+ channel

3 experiments on the same patch

cumulative of 144 experiments

Page 23: Membrane Transport Chapter 11. Transcellular transport of glucose

Resting Chemical Synapse

Page 24: Membrane Transport Chapter 11. Transcellular transport of glucose

Active Chemical Synapse

Page 25: Membrane Transport Chapter 11. Transcellular transport of glucose

Neuromuscular Junction in a Frog

Page 26: Membrane Transport Chapter 11. Transcellular transport of glucose

Three Conformations of Acetyl Choline receptor at the neuromuscular junction

Page 27: Membrane Transport Chapter 11. Transcellular transport of glucose

DVD Clip 49

Page 28: Membrane Transport Chapter 11. Transcellular transport of glucose

Ion Channels at Neuromuscular Junction

Page 29: Membrane Transport Chapter 11. Transcellular transport of glucose

Motor Neuron Cell body in the Spinal Chord

Page 30: Membrane Transport Chapter 11. Transcellular transport of glucose

Motor Neuron Cell body in the Spinal Chord

thousands of axon terminals are stained red by antibody that recognizes a protein in synaptic vesicles