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一种钙离子选择性瞬时受体电位通道的外孔结构

Outer pore architecture of a Ca2+-selective TRP channel.

作者信息

Voets Thomas, Janssens Annelies, Droogmans Guy, Nilius Bernd

机构信息

Department of Physiology, Campus Gasthuisberg, KU Leuven, B-3000 Leuven, Belgium.

出版信息

J Biol Chem. 2004 Apr 9;279(15):15223-30. doi: 10.1074/jbc.M312076200. Epub 2004 Jan 21.

Abstract

The TRP superfamily forms a functionally important class of cation channels related to the product of the Drosophila trp gene. TRP channels display an unusual diversity in activation mechanisms and permeation properties, but the basis of this diversity is unknown, as the structure of these channels has not been studied in detail. To obtain insight in the pore architecture of TRPV6, a Ca(2+)-selective member of the TRPV subfamily, we probed the dimensions of its pore and determined pore-lining segments using cysteine-scanning mutagenesis. Based on the permeability of the channel to organic cations, we estimated a pore diameter of 5.4 A. Mutating Asp(541), a residue involved in high affinity Ca(2+) binding, altered the apparent pore diameter, indicating that this residue lines the narrowest part of the pore. Cysteines introduced in a region preceding Asp(541) displayed a cyclic pattern of reactivity to Ag(+) and cationic methylthio-sulfanate reagents, indicative of a pore helix. The anionic methanethiosulfonate ethylsulfonate showed only limited reactivity in this region, consistent with the presence of a cation-selective filter at the outer part of the pore helix. Based on these data and on homology with the bacterial KcsA channel, we present the first structural model of a TRP channel pore. We conclude that main structural features of the outer pore, namely a selectivity filter preceded by a pore helix, are conserved between K(+) channels and TRPV6. However, the selectivity filter of TRPV6 is wider than that of K(+) channels and lined by amino acid side chains rather than main chain carbonyls.

摘要

瞬时受体电位(TRP)超家族构成了一类功能上重要的阳离子通道,与果蝇trp基因的产物相关。TRP通道在激活机制和通透特性方面表现出异常的多样性,但这种多样性的基础尚不清楚,因为这些通道的结构尚未得到详细研究。为了深入了解TRPV6(TRPV亚家族的一种钙选择性成员)的孔道结构,我们探测了其孔道尺寸,并使用半胱氨酸扫描诱变确定了孔道内衬片段。基于该通道对有机阳离子的通透性,我们估计其孔径为5.4埃。突变参与高亲和力钙结合的天冬氨酸(Asp)541残基,改变了表观孔径,表明该残基位于孔道最窄部分的内衬。在Asp541之前的区域引入的半胱氨酸对银离子(Ag+)和阳离子甲硫基磺酸盐试剂呈现出周期性的反应模式,表明存在一个孔螺旋。阴离子甲硫基磺酸盐乙磺酸盐在该区域仅表现出有限的反应性,这与孔螺旋外部存在阳离子选择性过滤器一致。基于这些数据以及与细菌KcsA通道的同源性,我们提出了第一个TRP通道孔道的结构模型。我们得出结论,K+通道和TRPV6在外孔的主要结构特征,即孔螺旋之前的选择性过滤器是保守的。然而,TRPV6的选择性过滤器比K+通道的更宽,并且由氨基酸侧链而不是主链羰基内衬。

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