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膜联蛋白V突变体的结构与电生理分析。人膜联蛋白V(一种体外电压门控钙通道)的诱变,提供了有关离子通道、电压传感器和离子选择性过滤器的结构特征的信息。

Structural and electrophysiological analysis of annexin V mutants. Mutagenesis of human annexin V, an in vitro voltage-gated calcium channel, provides information about the structural features of the ion pathway, the voltage sensor and the ion selectivity filter.

作者信息

Burger A, Voges D, Demange P, Perez C R, Huber R, Berendes R

机构信息

Max-Planck-Institut für Biochemie, Martinsried, Germany.

出版信息

J Mol Biol. 1994 Apr 8;237(4):479-99. doi: 10.1006/jmbi.1994.1249.

Abstract

Annexin V binds to phospholipids in a calcium-dependent manner and exhibits calcium channel activity in vitro. We prepared a variety of mutants yielding information about the structure-function relationship of the ion channel activity. All mutants were characterized by X-ray crystallography, electron microscopy and electrophysiological measurements. Their structures are insignificantly changed whereas their electrophysiological properties are drastically different. Glu95, located in the central hydrophilic pore of the molecule, is crucial for the ion selectivity filter as its exchange leads to reduced calcium and increased sodium conductance. The removal of Glu17, located on the protein surface and far from the ion conduction pathway, leads to the appearance of a second conductance level of 9 pS in addition to the conductance level of about 30 pS in the wild-type molecule. This was also the case for Glu78, which is part of a weak calcium binding site. The exchange of Glu17 and Glu78 produced a mutant retaining only the smaller conductance level. We conclude that these two residues influence the angle between the two halves of the molecule, which determines the diameter of the ion conduction pathway, thereby leading to the occurrence of a second conductance level.

摘要

膜联蛋白V以钙依赖的方式与磷脂结合,并在体外表现出钙通道活性。我们制备了多种突变体,以获取有关离子通道活性结构-功能关系的信息。所有突变体均通过X射线晶体学、电子显微镜和电生理测量进行表征。它们的结构变化不显著,而电生理特性却有很大差异。位于分子中央亲水孔中的Glu95对离子选择性过滤器至关重要,因为其交换会导致钙电导降低和钠电导增加。位于蛋白质表面且远离离子传导途径的Glu17的去除,除了野生型分子中约30 pS的电导水平外,还导致出现9 pS的第二个电导水平。Glu78也是如此,它是一个弱钙结合位点的一部分。Glu17和Glu78的交换产生了一个仅保留较小电导水平的突变体。我们得出结论,这两个残基影响分子两半部分之间的角度,该角度决定了离子传导途径的直径,从而导致第二个电导水平的出现。

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