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探索脂质双分子层中钾通道门控循环期间的构象变化。

Probing Conformational Changes during the Gating Cycle of a Potassium Channel in Lipid Bilayers.

作者信息

van der Cruijsen Elwin A W, Prokofyev Alexander V, Pongs Olaf, Baldus Marc

机构信息

NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, The Netherlands.

Department of Physiology, Institute of Cellular Neurophysiology, University of the Saarland, Homburg, Germany.

出版信息

Biophys J. 2017 Jan 10;112(1):99-108. doi: 10.1016/j.bpj.2016.12.001.

Abstract

Ion conduction across the cellular membrane requires the simultaneous opening of activation and inactivation gates of the K channel pore. The bacterial KcsA channel has served as a powerful system for dissecting the structural changes that are related to four major functional states associated with K gating. Yet, the direct observation of the full gating cycle of KcsA has remained structurally elusive, and crystal structures mimicking these gating events require mutations in or stabilization of functionally relevant channel segments. Here, we found that changes in lipid composition strongly increased the KcsA open probability. This enabled us to probe all four major gating states in native-like membranes by combining electrophysiological and solid-state NMR experiments. In contrast to previous crystallographic views, we found that the selectivity filter and turret region, coupled to the surrounding bilayer, were actively involved in channel gating. The increase in overall steady-state open probability was accompanied by a reduction in activation-gate opening, underscoring the important role of the surrounding lipid bilayer in the delicate conformational coupling of the inactivation and activation gates.

摘要

离子跨细胞膜传导需要钾通道孔的激活门和失活门同时打开。细菌KcsA通道已成为剖析与钾门控相关的四种主要功能状态有关的结构变化的有力系统。然而,对KcsA完整门控循环的直接观察在结构上仍然难以捉摸,模仿这些门控事件的晶体结构需要对功能相关的通道片段进行突变或稳定化处理。在这里,我们发现脂质组成的变化极大地增加了KcsA的开放概率。这使我们能够通过结合电生理和固态核磁共振实验,在类天然膜中探测所有四种主要的门控状态。与之前的晶体学观点相反,我们发现与周围双层膜耦合的选择性过滤器和炮塔区域积极参与通道门控。总体稳态开放概率的增加伴随着激活门打开的减少,这突出了周围脂质双层膜在失活门和激活门微妙构象偶联中的重要作用。

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