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摇椅式钾通道的门控:II. 门控电流的组成部分及通道激活模型。

Gating of Shaker K+ channels: II. The components of gating currents and a model of channel activation.

作者信息

Bezanilla F, Perozo E, Stefani E

机构信息

Department of Physiology, University of California at Los Angeles 90024.

出版信息

Biophys J. 1994 Apr;66(4):1011-21. doi: 10.1016/S0006-3495(94)80882-3.

Abstract

Steady-state and kinetic properties of gating currents of the Shaker K+ channels were studied in channels expressed in Xenopus oocytes and recorded with the cut-open oocyte voltage clamp. The charge versus potential (Q-V) curve reveals at least two components of charge, the first moving in the hyperpolarized region (V1/2 = -63 mV) and the second, with a larger apparent valence, moving in the more depolarized region (V1/2 = -44 mV). The kinetic analysis of gating currents revealed also two exponential decaying components that corresponded in their voltage dependence with the charge components described in the steady-state. The first component was found to correlate with the effects of prepulses that produce the Cole-Moore shift of the ionic and gating currents and seems to be occurring completely within closed conformations of the channel. The second component seems to be related to the events occurring between the closed states just preceding, but not including, the transition to the open state. The ON and OFF gating currents exhibit a pronounced rising phase at potentials at which the second component becomes important, and this region corresponds to the potential range where the channel opens. The results could not be explained with simple parallel models, but the data can be fitted to a sequential model that could be related to a first rearrangement of the putative four subunits in cooperative fashion, followed by a concerted charge movement that leads to the open channel. The first series of charge movements are produced by transitions between several closed states carrying less than two electronic charges per step, while a step carrying about 3.5 electronic charges can explain the second component. This step is followed by the transition to the open state carrying less than 0.5 electronic charges. This model is able to reproduce all the kinetic and steady-state properties of the gating currents and predicts many of the properties of the ionic currents.

摘要

利用切开的卵母细胞电压钳技术,对非洲爪蟾卵母细胞中表达的Shaker钾通道门控电流的稳态和动力学特性进行了研究。电荷-电压(Q-V)曲线显示至少有两个电荷成分,第一个在超极化区域移动(半值电压V1/2 = -63 mV),第二个具有较大的表观价态,在更去极化的区域移动(V1/2 = -44 mV)。门控电流的动力学分析还揭示了两个指数衰减成分,它们的电压依赖性与稳态中描述的电荷成分相对应。发现第一个成分与产生离子电流和门控电流的科尔-摩尔偏移的预脉冲效应相关,并且似乎完全发生在通道的关闭构象内。第二个成分似乎与紧接在向开放状态转变之前(但不包括该转变)的关闭状态之间发生的事件有关。开启和关闭门控电流在第二个成分变得重要的电位处呈现出明显的上升阶段,并且该区域对应于通道开放的电位范围。这些结果不能用简单的平行模型来解释,但数据可以拟合到一个序列模型,该模型可能与假定的四个亚基以协同方式的首次重排有关,随后是导致通道开放的协同电荷移动。第一系列的电荷移动是由每步携带少于两个电子电荷的几个关闭状态之间的转变产生的,而携带约3.5个电子电荷的一步可以解释第二个成分。这一步之后是向携带少于0.5个电子电荷的开放状态的转变。该模型能够重现门控电流的所有动力学和稳态特性,并预测离子电流的许多特性。

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