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Current-voltage relations of Cs+-inhibited K+ currents through the apical membrane of frog skin.

作者信息

De Wolf I, Van Driessche W

机构信息

Laboratorium voor Fysiologie, KUL, Campus Gasthuisberg, Leuven, Belgium.

出版信息

Pflugers Arch. 1988 Dec;413(2):111-7. doi: 10.1007/BF00582520.

DOI:10.1007/BF00582520
PMID:3265200
Abstract

The voltage-dependence of the inhibitory effect of mucosal Cs+ on the inward K+ current through the apical membrane of frog skin (Rana temporaria) was studied by recording transepithelial current-voltage relations. Experiments were performed with skins exposed to NaCl and KCl Ringer solutions on the serosal and mucosal side respectively (control skins), as well as with tissues incubated with K2SO4 Ringer solutions on both sides (depolarized skins). Studies of the dose-dependence of the Cs+ block showed that under both experimental conditions the apparent affinity of Cs+ increased as the transepithelial potential was clamped at higher mucosal positive voltages. Under control conditions, the concentration of Cs+ required to block 50% of the K+ current (KCs) recorded while the transepithelial voltage was clamped at zero mV was 16 mmol/l. KCs decreased exponentially with mucosal positive voltages. The dependence of KCs on the membrane potential was analyzed with Eyring rate theory in which Cs+ was assumed to block the K+ transport by binding to a site within the channel. The analysis showed that this site is located at a relative electrical distance delta = 0.32 of the voltage drop across the apical membrane, measured from the cytosolic side. The Hill coefficient obtained from this analysis was n = 3.1. Experiments with K+-depolarized tissues showed that only inward K+ currents recorded with positive transepithelial voltages were depressed by external Cs+. Also under these conditions KCs showed an exponential dependence on the transepithelial potential. The analysis of these data with the rate theory revealed delta = 0.09 and n = 1.7.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

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本文引用的文献

1
Low-noise amplification of voltage and current fluctuations arising in epithelia.上皮组织中产生的电压和电流波动的低噪声放大。
Rev Sci Instrum. 1978 Jan;49(1):52. doi: 10.1063/1.1135251.
2
Cs(+) causes a voltage-dependent block of inward K currents in resting skeletal muscle fibres.铯离子(Cs(+))在静息骨骼肌纤维中引起内向钾电流的电压依赖性阻断。
Nature. 1977 May 12;267(5607):169-70. doi: 10.1038/267169a0.
3
K+-permeability of the outer border of the frog skin (R. temporaria).青蛙皮肤(林蛙)外层边界的钾离子通透性。
Pflugers Arch. 1991 May;418(4):400-7. doi: 10.1007/BF00550878.
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Voltage-dependent interaction of barium and cesium with the potassium conductance of the cortical collecting duct apical cell membrane.钡和铯与皮质集合管顶端细胞膜钾电导的电压依赖性相互作用。
J Membr Biol. 1983;74(2):165-73. doi: 10.1007/BF01870505.
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The interaction of "K+-like" cations with the apical K+ channel in frog skin.“类钾”阳离子与蛙皮顶端钾通道的相互作用。
J Membr Biol. 1983;76(1):57-72. doi: 10.1007/BF01871453.
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K-current fluctuations in inward-rectifying channels of frog skeletal muscle.
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Ba2+-induced conductance fluctuations of spontaneously fluctuating K+ channels in the apical membrane of frog skin (Rana temporaria).钡离子诱导的蛙皮(林蛙)顶膜中自发波动的钾离子通道的电导波动。
J Membr Biol. 1980 Aug 21;56(1):31-42. doi: 10.1007/BF01869349.
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Effects of barium on the potassium conductance of squid axon.钡对鱿鱼轴突钾离子电导的影响。
J Gen Physiol. 1980 Jun;75(6):727-50. doi: 10.1085/jgp.75.6.727.
9
Spontaneous fluctuations of potassium channels in the apical membrane of frog skin.蛙皮顶端膜中钾通道的自发波动。
J Physiol. 1980 Feb;299:101-16. doi: 10.1113/jphysiol.1980.sp013113.
10
Physiological role of apical potassium ion channels in frog skin.蛙皮顶端钾离子通道的生理作用。
J Physiol. 1984 Nov;356:79-95. doi: 10.1113/jphysiol.1984.sp015454.