Regulation of a Heart Potassium Channel by Protein Kinase A and C
- 7 October 1988
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 242 (4875), 67-69
- https://doi.org/10.1126/science.2845575
Abstract
The enzymes adenosine 3',5'-monophosphate (cAMP)-dependent protein kinase (protein kinase A) and protein kinase C regulate the activity of a diverse group of cellular proteins including membrane ion channel proteins. When protein kinase A was stimulated in cardiac ventricular myocytes with the membrane-soluble cAMP analog 8-chlorphenylthio cAMP (8-CPT cAMP), the amplitude of the delayed-rectifier potassium current (IK) doubled when recorded at 32 degrees C but was not affected at 22 degrees C. In contrast, modulation of the calcium current (ICa) by 8-CPT cAMP was independent of temperature with similar increases in ICa occurring at both temperatures. Stimulation of protein kinase C by phorbol 12,13-dibutyrate also enhanced IK in a temperature-dependent manner but failed to increase ICa at either temperature. Thus, cardiac delayed-rectifier potassium but not calcium channels are regulated by two distinct protein kinases in a similar temperature-dependent fashion.This publication has 16 references indexed in Scilit:
- Stimulation of protein kinase C recruits covert calcium channels in Aplysia bag cell neuronsNature, 1987
- Cholecystokinin induces a decrease in Ca2+ current in snail neurons that appears to be mediated by protein kinase CNature, 1987
- Studies and Perspectives of Protein Kinase CScience, 1986
- Protein kinase C activation induces conductance changes in Hermissenda photoreceptors like those seen in associative learningNature, 1986
- ?-Adrenergic increase in the calcium conductance of cardiac myocytes studied with the patch clampPflügers Archiv - European Journal of Physiology, 1984
- β-Adrenergic modulation of calcium channels in frog ventricular heart cellsNature, 1984
- Modulation of gated ion channels as a mode of transmitter actionTrends in Neurosciences, 1983
- Ca2+ channel modulation by 8-bromocyclic AMP in cultured heart cellsNature, 1983
- Calcium channel modulation by neurotransmitters, enzymes and drugsNature, 1983
- Charge asymmetry does not affect the rate of Ca2+-induced aggregation of phospholipid vesiclesBiophysical Journal, 1979