A stretch-activated K+ channel sensitive to cell volume.
- 1 March 1989
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 86 (5) , 1731-1735
- https://doi.org/10.1073/pnas.86.5.1731
Abstract
The role of K+ channels in cell osmoregulation was investigated by using the patch-clamp technique. In cell-attached patches from Necturus proximal tubule, the short-open-time K+ channel at the basolateral membrane could be stretch-activated by pipette suction, where a negative pressure of 6 cm H2O (588.6 Pa) was sufficient to increase the open probability of the channel by a factor of 4.0 .+-. 0.8 (n = 7 tubules). A 50% reduction in bath osmolarity increased cell volume by 66 .+-. 10% and increased the K+-channel open probability by a factor of 5.8 .+-. 1.4 (n = 7) in the same cell-attached patches that were activated by pipette suction. A kinetic analysis indicates one open state and at least two closed states for this epithelial K+ channel. Both suction and swelling shorten the longest time constant of the closed-time distribution by a factor of 3, without significant effect on either the mean open time or the shorter closed-state time constant. The similar effect of suction and swelling is consistent with the hypothesis that stretch-activated K+ channels mediate the increase in macroscopic K+ conductance that occurs during osmoregulation of amphibian proximal tubules. Calculations based on a simple model indicate that small increments in cell volume could produce stastistically significant increases in K+-channel activity.This publication has 34 references indexed in Scilit:
- Ion channels activated by osmotic and mechanical stress in membranes of opossum kidney cellsThe Journal of Membrane Biology, 1988
- Mediation of cell volume regulation by Ca2+ influx through stretch-activated channelsNature, 1987
- Volume regulation in the early proximal tubule of theNecturus kidneyThe Journal of Membrane Biology, 1987
- A cation channel in frog lens epithelia responsive to pressure and calciumThe Journal of Membrane Biology, 1986
- Resting and osmotically induced basolateral K conductances in turtle colon.The Journal of general physiology, 1986
- Volume regulation byNecturus gallbladder: Basolateral KCl exitThe Journal of Membrane Biology, 1984
- Effects of Na-coupled alanine transport on intracellular K activities and the K conductance of the basolateral membranes ofNecturus small intestineThe Journal of Membrane Biology, 1983
- Volume regulation by human lymphocytes. Role of calcium.The Journal of general physiology, 1982
- Osmoregulatory Salt Transporting Mechanisms: Control of Cell Volume in Anisotonic MediaAnnual Review of Physiology, 1981
- Is the Ca2+-sensitive K+ channel under metabolic control in human red cells?Biochimica et Biophysica Acta (BBA) - Biomembranes, 1978