Cholecystokinin Activates a Variety of Intracellular Signal Transduction Mechanisms in Rodent Pancreatic Acinar Cells
- 1 December 2002
- journal article
- review article
- Published by Wiley in Basic & Clinical Pharmacology & Toxicology
- Vol. 91 (6) , 297-303
- https://doi.org/10.1034/j.1600-0773.2002.910606.x
Abstract
Cholecystokinin (CCK) acting through its G protein-coupled receptor is now known to activate a variety of intracellular signaling mechanisms and thereby regulate a complex array of cellular functions in pancreatic acinar cells. The best studied mechanism is the coupling through heterotrimeric G proteins of the Gq family to activate a phospholipase C leading to an increase in inositol trisphosphate and release of intracellular Ca2+. This pathway along with protein kinase C activation in response to the increase in diacylglycerol stimulates the secretion of digestive enzymes by the process of exocytosis. CCK also activates signaling pathways in acini more related to other processes. The three mitogen activated protein kinase cascades leading to ERKs, JNKs and p38 MAPK are all activated by CCK. CCK activates the ERK cascade by PKC activation of Raf which in turn activates MEK and ERKs. JNKs are activated by a distinct mechanism which requires higher concentrations of CCK. Both ERKs and JNKs are presumed to regulate gene expression. CCK activation of p38 MAPK also plays a role in regulating the actin cytoskeleton through phosphorylation of the small heat shock protein HSP27. The PI3K-PKB-mTOR pathway is activated by CCK and plays a major role in regulating protein synthesis at the translational level. This includes both activation of p70 S6K leading to phosphorylation of ribosomal protein S6 and the phosphorylation of the binding protein for initiation factor 4E leading to formation of the mRNA cap binding complex. Other signaling pathways activated by CCK receptors include NF-kappaB and a variety of tyrosine kinases. Further work is needed to understand how CCK receptors activate most of the above pathways and to better understand the biological events regulated by these diverse signaling pathways.Keywords
This publication has 31 references indexed in Scilit:
- Receptor biology and intracellular regulatory mechanisms in pancreatic acinar cellsCurrent Opinion in Gastroenterology, 2002
- Dominant Negative Rab3D Inhibits Amylase Release from Mouse Pancreatic AciniPublished by Elsevier ,2002
- Intracellular Signaling Mechanisms Activated by Cholecystokinin-Regulating Synthesis and Secretion of Digestive Enzymes in Pancreatic Acinar CellsAnnual Review of Physiology, 2001
- The PI3K–PDK1 connection: more than just a road to PKBBiochemical Journal, 2000
- Polarity in intracellular calcium signalingBioEssays, 1999
- Gastrin induces phosphorylation of eIF4E binding protein 1 and translation initiation of ornithine decarboxylase mRNAOncogene, 1998
- Molecular mechanisms for the control of translation by insulinBiochemical Journal, 1997
- Cholecystokinin stimulates heat shock protein 27 phosphorylation in rat pancreas both in vivo and in vitroGastroenterology, 1997
- Cholecystokinin Stimulates Formation of Shc-Grb2 Complex in Rat Pancreatic Acinar Cells through a Protein Kinase C-dependent MechanismPublished by Elsevier ,1996
- Jun Kinases Are Rapidly Activated by Cholecystokinin in Rat Pancreas both in Vitro and in VivoPublished by Elsevier ,1996