EXCITATION-CONTRACTION COUPLING IN GASTROINTESTINAL AND OTHER SMOOTH MUSCLES
- 1 March 1999
- journal article
- review article
- Published by Annual Reviews in Annual Review of Physiology
- Vol. 61 (1) , 85-115
- https://doi.org/10.1146/annurev.physiol.61.1.85
Abstract
The main contributors to increases in [Ca2+]i and tension are the entry of Ca2+ through voltage-dependent channels opened by depolarization or during action potential (AP) or slow-wave discharge, and Ca2+ release from store sites in the cell by the action of IP3 or by Ca(2+)-induced Ca(2+)-release (CICR). The entry of Ca2+ during an AP triggers CICR from up to 20 or more subplasmalemmal store sites (seen as hot spots, using fluorescent indicators); Ca2+ waves then spread from these hot spots, which results in a rise in [Ca2+]i throughout the cell. Spontaneous transient releases of store Ca2+, previously detected as spontaneous transient outward currents (STOCs), are seen as sparks when fluorescent indicators are used. Sparks occur at certain preferred locations--frequent discharge sites (FDSs)--and these and hot spots may represent aggregations of sarcoplasmic reticulum scattered throughout the cytoplasm. Activation of receptors for excitatory signal molecules generally depolarizes the cell while it increases the production of IP3 (causing calcium store release) and diacylglycerols (which activate protein kinases). Activation of receptors for inhibitory signal molecules increases the activity of protein kinases through increases in cAMP or cGMP and often hyperpolarizes the cell. Other receptors link to tyrosine kinases, which trigger signal cascades interacting with trimeric G-protein systems.Keywords
This publication has 234 references indexed in Scilit:
- Regulatory Functions of Phospholipase A2Critical Reviews in Immunology, 1997
- Molecular Cloning of Caveolin-3, a Novel Member of the Caveolin Gene Family Expressed Predominantly in MuscleJournal of Biological Chemistry, 1996
- Multiple Types of Ryanodine Receptor/Ca2+ Release Channels Are Expressed in Vascular Smooth MuscleBiochemical and Biophysical Research Communications, 1995
- Intracellular Calcium: Questions about quantal Ca2+releaseCurrent Biology, 1994
- Protein Kinase C Inhibits the Ca2+-Activated K+ Channel of Cultured Porcine Coronary Artery Smooth Muscle CellsBiochemical and Biophysical Research Communications, 1993
- Localization of inositol 1,4,5-trisphosphate receptor-like protein in plasmalemmal caveolae.The Journal of cell biology, 1992
- Ion conduction and discrimination in the sarcoplasmic reticulum ryanodine receptor/calcium-release channelJournal of Muscle Research and Cell Motility, 1992
- Effects of adenine nucleotides on inositol 1,4,5-trisphosphate-induced calcium release in vascular smooth muscle cells.The Journal of general physiology, 1991
- Calcium-induced calcium release mechanism in guinea pig taenia caeci.The Journal of general physiology, 1989
- Inward current in single smooth muscle cells of the guinea pig taenia coli.The Journal of general physiology, 1989