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用季铵型士的宁毒害的枪乌贼巨大轴突中钠电导和门控电流的阻断

Block of sodium conductance and gating current in squid giant axons poisoned with quaternary strychnine.

作者信息

Cahalan M D, Almers W

出版信息

Biophys J. 1979 Jul;27(1):57-73. doi: 10.1016/S0006-3495(79)85202-9.

Abstract

Quaternary strychnine blocks sodium channels from the axoplasmic side, probably by insertion into the inner channel mouth. Block is strongly voltage dependent, being more pronounced in depolarized than in resting axons. Using potential steps as a means to modulate the level of block, we investigate strychnine effects on sodium and gating currents at +50 and -50 mV. We analyze our data in terms of the simplest possible model, wherein only an open channel may receive and retain a strychnine molecule. Our main findings are (a) block by strychnine and inactivation resemble each other and (b) block of sodium and gating currents by strychnine happen with closely similar time-courses. Our data support the hypothesis of Armstrong and Bezanilla (1977) wherein an endogenous blocking particle causes inactivation by inserting itself into the inner mouth of the sodium channel. Quaternary strychnine may act as an artificial substitute for the hypothetical endogenous blocking particle. Further, we suggest that at least 90% of the rapid asymmetrical displacement current in squid axons is sodium channel gating current, inasmuch as quaternary strychnine can block 90% of the displacement current simultaneously with sodium current.

摘要

季铵型士的宁从轴浆侧阻断钠通道,可能是通过插入通道内口实现的。阻断作用强烈依赖电压,在去极化的轴突中比在静息轴突中更明显。我们利用电压阶跃作为调节阻断程度的手段,研究了士的宁在+50mV和 -50mV时对钠电流和门控电流的影响。我们根据尽可能简单的模型分析数据,在该模型中只有开放的通道才能接收并保留士的宁分子。我们的主要发现是:(a)士的宁引起的阻断与失活相似;(b)士的宁对钠电流和门控电流的阻断具有非常相似的时间进程。我们的数据支持阿姆斯特朗和贝萨尼利亚(1977年)的假说,即一种内源性阻断颗粒通过插入钠通道内口导致失活。季铵型士的宁可能作为这种假设的内源性阻断颗粒的人工替代物。此外,我们认为鱿鱼轴突中至少90%的快速不对称位移电流是钠通道门控电流,因为季铵型士的宁在阻断钠电流的同时能阻断90%的位移电流。

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