cell communication iii. g-protein linked receptor

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Cell Communication III

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Page 1: Cell Communication III. G-protein linked receptor

Cell Communication III

Page 2: Cell Communication III. G-protein linked receptor

G-protein linked receptor

Page 3: Cell Communication III. G-protein linked receptor

The structure of an inactive G-protein

Page 4: Cell Communication III. G-protein linked receptor

Without signaling molecule G-protein is inactive

Page 5: Cell Communication III. G-protein linked receptor

G-protein binds to receptor when signaling molecule is present

Page 6: Cell Communication III. G-protein linked receptor

G-protein accepts GTP and disassemble into two active subunits

Page 7: Cell Communication III. G-protein linked receptor

The α subunit of the G-protein can be deactivated through hydrolysis of GTP

Page 8: Cell Communication III. G-protein linked receptor

Deactivation of G-protein

Page 9: Cell Communication III. G-protein linked receptor

Reassembly of α subunit with other 2 subunits reforms inactive G-protein complex

Page 10: Cell Communication III. G-protein linked receptor

Arrestin binds phosphorylated G-protein receptor and deactivates the receptor and

prepares it for endocytosis

Page 11: Cell Communication III. G-protein linked receptor

Activation of gene transcription by cAMP

Page 12: Cell Communication III. G-protein linked receptor

Synthesis and degradation of cyclic AMP

Page 13: Cell Communication III. G-protein linked receptor
Page 14: Cell Communication III. G-protein linked receptor

Activation of cAMP dependent protein kinase

Page 15: Cell Communication III. G-protein linked receptor

Activation of gene transcription by cAMP

Page 16: Cell Communication III. G-protein linked receptor

Ca2+ and diacylglycerol activate protein kinase C

Page 17: Cell Communication III. G-protein linked receptor

Fertilization of an egg by a sperm triggers an increase in cytosolic Ca 2+

Page 18: Cell Communication III. G-protein linked receptor

Ways in which a cell maintains a low Ca 2+ concentration in the cytosol

Page 19: Cell Communication III. G-protein linked receptor

Ways in which a cell maintains a low Ca 2+ concentration in the cytosol

Page 20: Cell Communication III. G-protein linked receptor

When receptor chains crosslink the receptor is phosphorylated and activated

Page 21: Cell Communication III. G-protein linked receptor

Human growth hormone bound to its receptor tyrosine kinase

Page 22: Cell Communication III. G-protein linked receptor

Activated receptor kinase binds intracellular signaling proteins

Page 23: Cell Communication III. G-protein linked receptor
Page 24: Cell Communication III. G-protein linked receptor

Ras is activated by tyrosine kinase

Page 25: Cell Communication III. G-protein linked receptor

The Jak-STAT signaling pathway provides a fast track to the nucleus

Page 26: Cell Communication III. G-protein linked receptor

The Jak-STAT signaling pathway provides a fast track to the nucleus

Page 27: Cell Communication III. G-protein linked receptor