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钠通道失活的量子门控电荷

The quantal gating charge of sodium channel inactivation.

作者信息

Greeff N G, Forster I C

机构信息

Physiologisches Institut, Universität Zürich-Irchel, Switzerland.

出版信息

Eur Biophys J. 1991;20(3):165-76. doi: 10.1007/BF01561139.

Abstract

Using a very low noise voltage clamp technique it has been possible to record from the squid giant axon a slow component of gating current (Ig) during the inactivation phase of the macroscopic sodium current (INa) which was hitherto buried in the baseline noise. In order to examine whether this slow Ig contains gating charge that originates from transitions between the open (O) and the inactivated (I) states, which would indicate a true voltage dependence of inactivation, or whether other transitions contribute charge to slow Ig, a new model independent analysis termed isochronic plot analysis has been developed. From a direct correlation of Ig and the time derivative of the sodium conductance dgNa/dt the condition when only O-I transitions occur is detected. Then the ratio of the two signals is constant and a straight line appears in an isochronic plot of Ig vs. dgNa/dt. Its slope does not depend on voltage or time and corresponds to the quantal gating charge of the O-I transition (qh) divided by the single channel ionic conductance (gamma). This condition was found at voltages above -10 mV up to +40 mV and a figure of 1.21 e- was obtained for qh at temperatures of 5 and 15 degrees C. At lower voltages additional charge from other transitions, e.g. closed to open, is displaced during macroscopic inactivation. This means that conventional Eyring rate analysis of the inactivation time constant tau h is only valid above -10 mV and here the figure for qh was confirmed also from this analysis. It is further shown that most of the present controversies surrounding the voltage dependence of inactivation can be clarified. The validity of the isochronic plot analysis has been confirmed using simulated gating and ionic currents.

摘要

使用一种极低噪声电压钳技术,已能够在枪乌贼巨大轴突上记录到宏观钠电流(INa)失活阶段的门控电流(Ig)慢成分,该成分此前一直被基线噪声所掩盖。为了研究这种慢Ig是否包含源自开放(O)态和失活(I)态之间转变的门控电荷(这将表明失活具有真正的电压依赖性),或者其他转变是否为慢Ig贡献电荷,已开发出一种新的与模型无关的分析方法,即等时线图分析。通过Ig与钠电导时间导数dgNa/dt的直接相关性,检测到仅发生O-I转变的条件。然后,两个信号的比值是恒定的,并且在Ig与dgNa/dt的等时线图中会出现一条直线。其斜率不依赖于电压或时间,对应于O-I转变的量子门控电荷(qh)除以单通道离子电导(γ)。在高于-10 mV至+40 mV的电压下发现了这种情况,在5和15摄氏度的温度下,qh的值为1.21 e-。在较低电压下,宏观失活期间会有来自其他转变(例如关闭到开放)的额外电荷转移。这意味着对失活时间常数τh的传统艾林速率分析仅在高于-10 mV时有效,并且在此处也通过该分析证实了qh的值。进一步表明,目前围绕失活电压依赖性的大多数争议都可以得到澄清。使用模拟的门控电流和离子电流证实了等时线图分析的有效性。

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