Redox Regulation of Large Conductance Ca2+-activated K+ Channels in Smooth Muscle Cells
Open Access
- 1 July 1997
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 110 (1) , 35-44
- https://doi.org/10.1085/jgp.110.1.35
Abstract
The effects of sulfhydryl reduction/oxidation on the gating of large-conductance, Ca2+-activated K+ (maxi-K) channels were examined in excised patches from tracheal myocytes. Channel activity was modified by sulfhydryl redox agents applied to the cytosolic surface, but not the extracellular surface, of membrane patches. Sulfhydryl reducing agents dithiothreitol, β-mercaptoethanol, and GSH augmented, whereas sulfhydryl oxidizing agents diamide, thimerosal, and 2,2′-dithiodipyridine inhibited, channel activity in a concentration-dependent manner. Channel stimulation by reduction and inhibition by oxidation persisted following washout of the compounds, but the effects of reduction were reversed by subsequent oxidation, and vice versa. The thiol-specific reagents N-ethylmaleimide and (2-aminoethyl)methanethiosulfonate inhibited channel activity and prevented the effect of subsequent sulfhydryl oxidation. Measurements of macroscopic currents in inside-out patches indicate that reduction only shifted the voltage/nPo relationship without an effect on the maximum conductance of the patch, suggesting that the increase in nPo following reduction did not result from recruitment of more functional channels but rather from changes of channel gating. We conclude that redox modulation of cysteine thiol groups, which probably involves thiol/disulfide exchange, alters maxi-K channel gating, and that this modulation likely affects channel activity under physiological conditions.Keywords
This publication has 28 references indexed in Scilit:
- Oxygen-Derived Free Radical Stress Activates Nonselective Cation Current in Guinea Pig Ventricular MyocytesCirculation Research, 1995
- Electrostatic potential of the acetylcholine binding sites in the nicotinic receptor probed by reactions of binding-site cysteines with charged methanethiosulfonatesBiochemistry, 1994
- Beta-adrenergic agonists regulate KCa channels in airway smooth muscle by cAMP-dependent and -independent mechanisms.Journal of Clinical Investigation, 1994
- Sulfhydryl oxidation induces rapid and reversible closure of the ATP‐regulated K+ channel in the pancreatic β‐cellFEBS Letters, 1993
- Acetylcholine Receptor Channel Structure Probed in Cysteine-Substitution MutantsScience, 1992
- Regulation of Arterial Tone by Activation of Calcium-Dependent Potassium ChannelsScience, 1992
- Redox modulatory site of the NMDA receptor–channel complex: Regulation by oxidized glutathioneJournal of Neuroscience Research, 1991
- Regulation of fast inactivation of cloned mammalian IK(A) channels by cysteine oxidationNature, 1991
- Molecular and Cellular Aspects of Thiol–Disulfide ExchangePublished by Wiley ,1990
- Regulation of Ca2+ -dependent K+ -channel activity in tracheal myocytes by phosphorylationNature, 1989