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单空位与单离子渗透率比值的取向独立性。

Orientation independence of single-vacancy and single-ion permeability ratios.

作者信息

McGill P, Schumaker M F

机构信息

Department of Pure and Applied Mathematics, Washington State University, Pullman 99164, USA.

出版信息

Biophys J. 1995 Jul;69(1):84-93. doi: 10.1016/S0006-3495(95)79878-2.

Abstract

Single-vacancy models have been proposed as open channel permeation mechanisms for K+ channels. Single-ion models have been used to describe permeation through Na+ channels. This paper demonstrates that these models have a distinctive symmetry property. Their permeability ratios, measured under biionic conditions, are independent of channel orientation when the reversal potential is zero. This symmetry is a property of general m-site single-vacancy channels, m-site shaking-stack channels, as well as m-site single-ion channels. An experimental finding that the permeability ratios of a channel did not have this symmetry would provide evidence that a single-vacancy or single-ion model is an incorrect or incomplete description of permeation.

摘要

单空位模型已被提出作为钾离子通道的开放通道渗透机制。单离子模型已被用于描述通过钠离子通道的渗透。本文表明这些模型具有独特的对称性质。当反转电位为零时,在双离子条件下测量的它们的渗透率与通道方向无关。这种对称性是一般m位点单空位通道、m位点摆动堆积通道以及m位点单离子通道的特性。一个通道的渗透率不具有这种对称性的实验发现将提供证据表明单空位或单离子模型对渗透的描述是不正确或不完整的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e828/1236227/1367536d74ea/biophysj00059-0085-a.jpg

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