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钠通道门控的物理模型。

A physical model of sodium channel gating.

作者信息

Edmonds D T

出版信息

Eur Biophys J. 1987;14(4):195-201. doi: 10.1007/BF00256352.

Abstract

Most current models of membrane ion channel gating are abstract compartmental models consisting of many undefined states connected by rate constants arbitrarily assigned to fit the known kinetics. In this paper is described a model with states that are defined in terms of physically plausible real systems which is capable of describing accurately most of the static and dynamic properties measured for the sodium channel of the squid axon. The model has two components. The Q-system consists of charges and dipoles that can move in response to an electric field applied across the membrane. It would contain and may compose the gating charge that is known to transfer prior to channel opening. The N-system consists of a charged group or dipole that is constrained to move only in the plane of the membrane and thus does not interact directly with the trans-membrane electric field but can interact electrostatically with the Q-system. The N-system has only two states, its resting state (channel closed) and its excited state (channel open) and its response time is very short in comparison with that of the Q-system. On depolarizing the membrane the the N-system will not make a transition to its open state until a critical amount of Q-charge transfer has occurred. Using only four adjustable parameters that are fully determined by fitting the equilibrium properties of the model to those of the sodium channel in the squid axon, the model is then able to describe with some accuracy the kinetics of channel opening and closing and includes the Cole and Moore delay.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

目前大多数膜离子通道门控模型都是抽象的隔室模型,由许多未定义的状态组成,这些状态通过为拟合已知动力学而任意设定的速率常数相连。本文描述了一个模型,其状态是根据物理上合理的真实系统定义的,能够准确描述枪乌贼轴突钠通道测量的大部分静态和动态特性。该模型有两个组成部分。Q系统由电荷和偶极子组成,它们能响应跨膜施加的电场而移动。它会包含并可能构成已知在通道开放前转移的门控电荷。N系统由一个带电基团或偶极子组成,它被限制只能在膜平面内移动,因此不直接与跨膜电场相互作用,但能与Q系统发生静电相互作用。N系统只有两种状态,其静息状态(通道关闭)和激发状态(通道开放),与Q系统相比,其响应时间非常短。在膜去极化时,直到发生临界量的Q电荷转移,N系统才会转变为其开放状态。该模型仅使用四个可调节参数,这些参数通过将模型的平衡特性与枪乌贼轴突钠通道的平衡特性拟合而完全确定,然后能够较为准确地描述通道开放和关闭动力学,包括科尔和摩尔延迟。(摘要截短于250字)

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