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短杆菌肽A通道中的离子选择性、饱和性和阻断作用:I. 具有两对结合位点和多个电导状态的离子选择性通道电特性的理论

Ionic selectivity, saturation and block in gramicidin A channels: I. Theory for the electrical properties of ion selective channels having two pairs of binding sites and multiple conductance states.

作者信息

Sandblom J, Eisenman G, Neher E

出版信息

J Membr Biol. 1977 Mar 23;31(4):383-47. doi: 10.1007/BF01869414.

Abstract

A model for the gramicidin A channel is proposed which extends existing models by adding a specific cationic binding site at each entrance to the channel. The binding of ions to these outer channel sites is assumed to shift the energy levels of the inner sites and barriers and thereby alter the channel conductance. The resulting properties are analyzed theoretically for the simplest case of two inner sites and a single energy barrier. This for-site model (two outer and two inner) predicts that the membrane potential at zero current (Uo) should be a Goldman-Hodgkin-Katz equation with concentration-dependent permeability ratios. The coefficients of the concentration-dependent terms are shown to be related to the peak energy shifts of the barrier and to the binding constants of the outer sites. The thory also predicts the channel conductance in symmetrical solutions to exhibit three limiting behaviors, from which the properties of the outer and inner sites can be characterized. In two-cation symmetrical mixtures the conductance as a function of mole fraction is shown to have a minimum, and the related phenomenon of inhibition and block exerted by one ion on the other is explained explicitly by the theory. These various phenomena, having ion interactions in a multiply occupied channel as a common physical basis, are all related (by the theory) through a set of measurable parameters describing the properties of the system.

摘要

提出了一种短杆菌肽A通道模型,该模型通过在通道的每个入口处添加一个特定的阳离子结合位点来扩展现有模型。假定离子与这些通道外位点的结合会改变内部位点和势垒的能级,从而改变通道电导。针对具有两个内部位点和一个单一能垒的最简单情况,从理论上分析了由此产生的特性。这种四位点模型(两个外部和两个内部)预测,零电流时的膜电位(Uo)应该是一个具有浓度依赖性渗透比的戈德曼-霍奇金- Katz方程。浓度依赖性项的系数显示与势垒的峰值能量位移以及外部位点的结合常数有关。该理论还预测,对称溶液中的通道电导会表现出三种极限行为,据此可以表征外部和内部位点的特性。在两种阳离子的对称混合物中,电导作为摩尔分数的函数显示有一个最小值,并且该理论明确解释了一种离子对另一种离子施加的抑制和阻断的相关现象。这些各种现象,都以在多重占据通道中的离子相互作用作为共同的物理基础,(根据该理论)都通过一组描述系统特性的可测量参数相互关联。

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