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电压门控离子通道电导转变的随机模型

A Stochastic Model of Conductance Transitions in Voltage-Gated IonChannels.

作者信息

Lee Kwonmoo, Sung Wokyung

出版信息

J Biol Phys. 2002 Jun;28(2):279-88. doi: 10.1023/A:1019987816498.

Abstract

We present a statistical physics model to describe the stochastic behaviorof ion transport and channel transitions under an applied membrane voltage.To get pertinent ideas we apply our general theoretical scheme to ananalytically tractable model of the channel with a deep binding site whichinteracts with the permeant ions electrostatically. It is found that theinteraction is modulated by the average ionic occupancy in the bindingsite, which is enhanced by the membrane voltage increases. Above acritical voltage, the interaction gives rise to a emergence of a newconducting state along with shift of S4 charge residues in the channel.This exploratory study calls for further investigations to correlate thecomplex transition behaviors with a variety of ion channels, withparameters in the model, potential energy parameters, voltage, and ionicconcentration.

摘要

我们提出了一个统计物理模型,用于描述施加膜电压下离子传输和通道转变的随机行为。为了获得相关概念,我们将通用理论方案应用于一个具有与渗透离子发生静电相互作用的深结合位点的通道解析易处理模型。结果发现,这种相互作用由结合位点中的平均离子占据情况调制,而膜电压升高会增强这种占据情况。高于临界电压时,这种相互作用会导致新导电态的出现以及通道中S4电荷残基的移动。这项探索性研究需要进一步开展调查,以将复杂的转变行为与各种离子通道、模型参数、势能参数、电压和离子浓度联系起来。

相似文献

7
Ionic channels with conformational substates.具有构象亚态的离子通道。
Biophys J. 1985 May;47(5):581-90. doi: 10.1016/S0006-3495(85)83954-0.

本文引用的文献

1
Physical model of voltage sensing in sodium channels based on the sliding helix complex.基于滑动螺旋复合体的钠通道电压传感物理模型。
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 1996 May;53(5):5137-5145. doi: 10.1103/physreve.53.5137.
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Ion pores in biological membranes as self-organized bistable systems.
Phys Rev A. 1992 Oct 15;46(8):5232-5241. doi: 10.1103/physreva.46.5232.
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Transmembrane movement of the shaker K+ channel S4.震荡器钾通道S4的跨膜运动
Neuron. 1996 Feb;16(2):387-97. doi: 10.1016/s0896-6273(00)80056-2.
8
Electrostatic interactions in membranes and proteins.膜与蛋白质中的静电相互作用。
Annu Rev Biophys Biophys Chem. 1986;15:163-93. doi: 10.1146/annurev.bb.15.060186.001115.

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