Quantification of K+ secretion through apical low-conductance K channels in the CCD
Open Access
- 1 July 2005
- journal article
- Published by American Physiological Society in American Journal of Physiology-Renal Physiology
- Vol. 289 (1) , F117-F126
- https://doi.org/10.1152/ajprenal.00471.2004
Abstract
Outward and inward currents through single small-conductance K+ (SK) channels were measured in cell-attached patches of the apical membrane of principal cells of the rat cortical collecting duct (CCD). Currents showed mild inward rectification with high [K+] in the pipette (Kp+), which decreased as Kp+ was lowered. Inward conductances had a hyperbolic dependence on Kp+ with half-maximal conductance at ∼20 mM. Outward conductances, measured near the reversal potential, also increased with Kp+ from 15 pS (Kp+ = 0) to 50 pS (Kp+ = 134 mM). SK channel density was measured as the number of conducting channels per patch in cell-attached patches. As reported previously, channel density increased when animals were on a high-K diet for 7 days. Addition of 8-cpt-cAMP to the bath at least 5 min before making a seal increased SK channel density to an even greater extent, although this increase was not additive with the effect of a high-K diet. In contrast, increases in Na channel activity, assessed as the whole cell amiloride-sensitive current, due to K loading and 8-cpt-cAMP treatment were additive. Single-channel conductances and channel densities were used as inputs to a simple mathematical model of the CCD to predict rates of transepithelial Na+ and K+ transport as a function of apical Na+ permeability and K+ conductance, basolateral pump rates and K+ conductance, and the paracellular conductance. With measured values for these parameters, the model predicted transport rates that were in good agreement with values measured in isolated, perfused tubules. The number and properties of SK channels account for K+ transport by the CCD under all physiological conditions tested.Keywords
This publication has 30 references indexed in Scilit:
- Apical potassium channels in the rat connecting tubuleAmerican Journal of Physiology-Renal Physiology, 2004
- Absence of Small Conductance K+ Channel (SK) Activity in Apical Membranes of Thick Ascending Limb and Cortical Collecting Duct in ROMK (Bartter's) Knockout MiceJournal of Biological Chemistry, 2002
- Permeation and Gating of an Inwardly Rectifying Potassium ChannelThe Journal of general physiology, 1998
- Extracellular K+ and Intracellular pH Allosterically Regulate Renal Kir1.1 ChannelsPublished by Elsevier ,1996
- Regulation of Na channels of the rat cortical collecting tubule by aldosterone.The Journal of general physiology, 1993
- Regulation of the Na-K pump of the rat cortical collecting tubule by aldosterone.The Journal of general physiology, 1993
- Independent effects of aldosterone and potassium on induction of potassium adaptation in rat kidney.Journal of Clinical Investigation, 1987
- Control of sodium and potassium transport in the cortical collecting duct of the rat. Effects of bradykinin, vasopressin, and deoxycorticosterone.Journal of Clinical Investigation, 1985
- Structural and functional study of the rat distal nephron: Effects of potassium adaptation and depletionKidney International, 1981
- Modulation of cell membrane area in renal collecting tubules by corticosteroid hormones.The Journal of cell biology, 1979