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绵羊浦肯野纤维中起搏电流If的动力学及温度依赖性

The kinetics and temperature dependence of the pace-maker current if in sheep Purkinje fibres.

作者信息

Hart G

出版信息

J Physiol. 1983 Apr;337:401-16. doi: 10.1113/jphysiol.1983.sp014631.

Abstract

The kinetic properties of the if channel in shortened sheep Purkinje fibres were investigated using a two-micro-electrode voltage-clamp technique in the presence of Ba2+, Mn2+ and tetrodotoxin (TTX). The time course of the hyperpolarization-activated if currents (DiFrancesco, 1981 b) at potentials within the activation range was found to depend on whether the channel was switching 'on' or 'off'. At potentials positive to the half-activation point if decay was faster than if onset; at potentials negative to the half-activation point if onset was faster than if decay. The time courses of if onset and decay become similar only at potentials close to the centre of the activation range. If a single exponential was fitted to the time course of if switching, the time constant (tau y) was found to vary as a function of potential from approximately 50 msec to several seconds. The tau y - voltage relation is an extremely steep bell-shaped distribution. Reducing external Na+ (range 140-17.5 mM) did not alter the voltage dependence of the if time course. Increasing external K+ (range 5-60 mM) shifted the if time constants and activation curve by similar amounts in a depolarizing direction. The temperature dependence of if was investigated over the range 27.5-41 degrees C. Cooling reversibly slowed the time course of if activation with a Q10 of 3.13 (S.D. +/- 0.85, n = 62). A reversible reduction in the slope of the fully-activated current-voltage relation was observed on cooling, the Q10 being 1.35 (S.D. +/- 0.07), and was usually accompanied by a small depolarizing shift of the half-activation point and the reversal potential Ef. It is concluded that the if time course shows a marked potential dependence and does not obey Hodgkin-Huxley kinetics. Its temperature dependence resembles that of if in the sino-atrial node (DiFrancesco & Ojeda, 1980).

摘要

采用双微电极电压钳技术,在Ba2 +、Mn2 +和河豚毒素(TTX)存在的情况下,研究了缩短的绵羊浦肯野纤维中if通道的动力学特性。发现在激活范围内的电位下,超极化激活的if电流(迪弗朗西斯科,1981b)的时间进程取决于通道是“开启”还是“关闭”。在高于半激活点的电位下,if电流衰减比起始快;在低于半激活点的电位下,if电流起始比衰减快。只有在接近激活范围中心的电位下,if电流起始和衰减的时间进程才变得相似。如果用单指数拟合if电流转换的时间进程,发现时间常数(τy)随电位变化,范围从约50毫秒到几秒。τy - 电压关系是一种极其陡峭的钟形分布。降低外部Na +(范围140 - 17.5 mM)不会改变if电流时间进程的电压依赖性。增加外部K +(范围5 - 60 mM)会使if电流时间常数和激活曲线在去极化方向上发生相似程度的偏移。在27.5 - 41摄氏度范围内研究了if电流的温度依赖性。冷却可逆地减慢了if电流激活的时间进程,Q10为3.13(标准差±0.85,n = 62)。冷却时观察到完全激活的电流 - 电压关系斜率可逆降低,Q10为1.35(标准差±0.07),并且通常伴随着半激活点和反转电位Ef的小去极化偏移。结论是,if电流时间进程显示出明显的电位依赖性,不服从霍奇金 - 赫胥黎动力学。其温度依赖性类似于窦房结中的if电流(迪弗朗西斯科和奥赫达,1980)。

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