vesicle transport chapter 13. multivesicular bodies form on the pathway to late endosomes

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Vesicle Transport Chapter 13

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Page 1: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Vesicle Transport

Chapter 13

Page 2: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes
Page 3: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Multivesicular bodies form on the pathway to late endosomes

Page 4: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

ubiquitin marksprotein fordestruction

Page 5: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes
Page 6: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes
Page 7: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Formation of secretory vesicles

Page 8: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Blood glucose regulation

Page 9: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

α and β cells in islet of Langerhans

Page 10: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

The Pancreas

Page 11: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Secretory vesicles formed in a insulin secreting β cell of the pancreas stained with clathrin antibody

Page 12: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Release of insulin from a secretory vesicle of a pancreatic β-cell

Page 13: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Insulin signal causes relocation of glucose transporters

Page 14: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Before Insulin

• Before insulin was discovered in 1921, everyone with type 1 diabetes died within weeks to years of its onset

Page 15: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes
Page 16: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes
Page 17: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

rapid histamine release by mast cells

Page 18: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Cell Communication

chapter 15

Page 19: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Intracellular signaling pathways

Page 20: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

4 types of intercellular signaling

Page 21: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

4 types of intercellular signaling

Page 22: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Autocrine signaling allow a group of cells but not a single cell to respond to a differentiation signal

coordinates decisions by a group of identical cells

Page 23: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Gap junctions allow signaling information to be shared by neighboring cells

Page 24: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

figure 05-06b.jpg

Gap Junction

Page 25: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

An animal cell depends on extracellular signals to survive or divide

Page 26: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

An animal cell depends on extracellular signals to differentiate. Without extracellular signals the

cell will die

Page 27: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Acetylcholine, a neurotransmitter, can induce various responses in different cells

Page 28: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Acetylcholine, a neurotransmitter, can induce various responses in different cells

Page 29: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Acetylcholine, a neurotransmitter, can induce various responses in different cells

Page 30: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Chemical Structure of Acetylcholine

Page 31: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Signaling molecules must be turned over rapidly; if turnover time is one minute concentration can decrease rapidly

Page 32: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Signaling molecules must be turned over rapidly; if turnover time is one minute concentration can increase rapidly

Page 33: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Extracellular signaling molecules can bind to intracellular receptors

Page 34: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Acetyl choline causes release of NO which results in rapid relaxation of smooth muscle cells

Page 35: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Signaling molecules that bind to nuclear receptors are small and hydrophobic

Page 36: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Inhibitory proteins make receptor inactive when not bound to the signaling molecule

Page 37: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

When signaling molecule binds receptor binds DNA and increases gene transcription

Page 38: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Nuclear receptors have a DNA binding domain

Page 39: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Extracellular signaling molecules can bind to cell surface receptors

Page 40: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

3 large classes of cell surface receptors; ion channel linked receptors

Page 41: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

Active Chemical Synapse

Page 42: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

3 large classes of cell surface receptors; G protein linked receptors

Page 43: Vesicle Transport Chapter 13. Multivesicular bodies form on the pathway to late endosomes

3 large classes of cell surface receptors; enzyme linked receptors