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细胞外四乙铵离子对大鼠皮层神经元快速氯离子通道的电压依赖性阻断

Voltage-dependent block of fast chloride channels from rat cortical neurons by external tetraethylammonium ion.

作者信息

Sanchez D Y, Blatz A L

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas 75235.

出版信息

J Gen Physiol. 1992 Aug;100(2):217-31. doi: 10.1085/jgp.100.2.217.

Abstract

Tetraethylammonium ion (TEA) and its longer chain derivatives have been used extensively to block currents through K-selective ion channels. Substantial information has been gained about the structure and gating mechanisms of K and other cation channels from the analysis of the blocking interactions of TEA and other quaternary ammonium ions. We now present an analysis of blocking interactions between single Cl-selective ion channels from acutely dissociated rat cortical neurons and externally applied TEA. TEA applied to the extracellular membrane surface (TEAo) blocked Cl channels in a voltage-dependent manner, with hyperpolarizing potentials favoring block. The voltage dependence of block could be adequately fit assuming that TEA enters the channel pore and binds to a site located approximately 28% of the way through the membrane electrical field. The dose-response relationship between fractional current and [TEA]o at a fixed holding potential of -40 mV was well fit to a simple model with two blocking sites with dissociation constants (Kd) of approximately 2 and 70 mM. The dose-response relationship could also be fit by a mechanism where TEA only partially blocks the channels. At the bandwidth used in these experiments (1-2 kHz), both the mean open duration (composed of the open and blocked durations) and burst duration (composed of open, blocked, and short lifetime shut durations) increased with increased [TEA]o. This is expected if TEAo can bind and unbind only when the channel is in the open kinetic state. These results suggest that the structure of the permeability pathway of these anion-selective channels may be very similar to that of other channels that are blocked by TEA. Additionally, these results caution that a blocking effect by TEA cannot, by itself, be used as sufficient evidence for implicating the participation of K channels in a particular process.

摘要

四乙铵离子(TEA)及其长链衍生物已被广泛用于阻断通过钾选择性离子通道的电流。通过分析TEA和其他季铵离子的阻断相互作用,人们已经获得了关于钾通道和其他阳离子通道的结构及门控机制的大量信息。我们现在展示了对急性解离的大鼠皮质神经元中单个氯选择性离子通道与外部施加的TEA之间阻断相互作用的分析。施加到细胞外膜表面的TEA(TEAo)以电压依赖性方式阻断氯通道,超极化电位有利于阻断。假设TEA进入通道孔并结合到位于膜电场约28%位置的位点,则阻断的电压依赖性可以得到充分拟合。在-40 mV的固定钳制电位下,分数电流与[TEAo]之间的剂量反应关系很好地拟合了一个具有两个解离常数(Kd)约为2 mM和70 mM的阻断位点的简单模型。剂量反应关系也可以通过TEA仅部分阻断通道的机制来拟合。在这些实验中使用的带宽(1 - 2 kHz)下,平均开放持续时间(由开放和阻断持续时间组成)和爆发持续时间(由开放、阻断和短寿命关闭持续时间组成)都随着[TEAo]的增加而增加。如果TEAo仅在通道处于开放动力学状态时才能结合和解离,那么这是预期的结果。这些结果表明,这些阴离子选择性通道的通透途径结构可能与其他被TEA阻断的通道非常相似。此外,这些结果提醒,TEA的阻断作用本身不能作为暗示钾通道参与特定过程的充分证据。

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