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豚鼠离体肝细胞中钙敏感性电压门控延迟整流钾通道的特性研究

Characterization of the calcium-sensitive voltage-gated delayed rectifier potassium channel in isolated guinea pig hepatocytes.

作者信息

Koumi S, Sato R, Horikawa T, Aramaki T, Okumura H

机构信息

First Department of Internal Medicine, Nippon Medical School, Tokyo, Japan.

出版信息

J Gen Physiol. 1994 Jul;104(1):147-71. doi: 10.1085/jgp.104.1.147.

Abstract

The voltage-dependent K+ channel was examined in enzymatically isolated guinea pig hepatocytes using whole-cell, excised outside-out and inside-out configurations of the patch-clamp technique. The resting membrane potential in isolated hepatocytes was -25.3 +/- 4.9 mV (n = 40). Under the whole-cell voltage-clamp, the time-dependent delayed rectifier outward current was observed at membrane potentials positive to -20 mV at physiological temperature (37 degrees C). The reversal potential of the current, as determined from tail current measurements, shifted by approximately 57 mV per 10-fold change in the external K+ concentration. In addition, the current did not appear when K+ was replaced with Cs+ in the internal and external solutions, indicating that the current was carried by K+ ions. The envelope test of the tails demonstrated that the growth of the tail current followed that of the current activation. The ratio between the activated current and the tail amplitude was constant during the depolarizing step. The time course of growth and deactivation of the tail current were best described by a double exponential function. The current was suppressed in Ca(2+)-free, 5 mM EGTA internal or external solution (pCa > 9). The activation curve (P infinity curve) was not shifted by changing the internal Ca2+ concentration ([Ca2+]i). The current was inhibited by bath application of 4-aminopyridine or apamin. alpha 1-Adrenergic stimulation with noradrenaline enhanced the current but beta-adrenergic stimulation with isoproterenol had no effect on the current. In single-channel recordings from outside-out patches, unitary current activity was observed by depolarizing voltage-clamp steps whose slope conductance was 9.5 +/- 2.2 pS (n = 10). The open time distribution was best described by a single exponential function with the mean open lifetime of 18.5 +/- 2.6 ms (n = 14), while at least two exponentials were required to fit the closed time distributions with a time constant for the fast component of 2.0 +/- 0.3 ms (n = 14) and that for the slow component of 47.7 +/- 5.9 ms (n = 14). Ensemble averaged current exhibited delayed rectifier nature which was consistent with whole-cell measurements. In excised inside-out patch recordings, channel open probability was sensitive to [Ca2+]i. The concentration of Ca2+ at the half-maximal activation was 0.031 microM. These results suggest that guinea pig hepatocytes possess voltage-gated delayed rectifier K+ channels which are modified by intracellular Ca2+.

摘要

采用膜片钳技术的全细胞、外向型膜片和内向型膜片模式,对酶分离的豚鼠肝细胞中的电压依赖性钾通道进行了研究。分离的肝细胞静息膜电位为-25.3±4.9 mV(n = 40)。在全细胞膜片钳模式下,在生理温度(37℃)下,当膜电位正向超过-20 mV时,观察到时间依赖性延迟整流外向电流。通过尾电流测量确定的电流反转电位,随外部钾离子浓度每10倍变化而偏移约57 mV。此外,当内部和外部溶液中的钾离子被铯离子取代时,电流未出现,表明该电流由钾离子携带。尾电流的包络测试表明,尾电流的增长与电流激活的增长一致。在去极化步骤中,激活电流与尾电流幅度之比是恒定的。尾电流的增长和失活时间过程最好用双指数函数描述。在无钙、5 mM乙二醇双四乙酸(EGTA)的内部或外部溶液(pCa>9)中,电流受到抑制。改变内部钙离子浓度([Ca2+]i),激活曲线(P∞曲线)未发生偏移。通过浴槽施加4-氨基吡啶或蜂毒明肽可抑制该电流。用去甲肾上腺素进行α1-肾上腺素能刺激可增强该电流,但用异丙肾上腺素进行β-肾上腺素能刺激对该电流无影响。在对外向型膜片进行的单通道记录中,通过去极化电压钳制步骤观察到单位电流活动,其斜率电导为9.5±2.2 pS(n = 10)。开放时间分布最好用单指数函数描述,平均开放寿命为18.5±2.6 ms(n = 14),而至少需要两个指数函数来拟合关闭时间分布,快速成分的时间常数为2.0±0.3 ms(n = 14),慢速成分的时间常数为47.7±5.9 ms(n = 14)。整体平均电流表现出延迟整流特性,这与全细胞测量结果一致。在切除的内向型膜片记录中,通道开放概率对[Ca2+]i敏感。半最大激活时的钙离子浓度为0.031 microM。这些结果表明,豚鼠肝细胞具有电压门控延迟整流钾通道,该通道受细胞内钙离子修饰。

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