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一种具有内在内向整流的小型病毒钾离子通道。

A small viral potassium ion channel with an inherent inward rectification.

机构信息

a Membrane Biophysics , Technische Universität Darmstadt , Darmstadt , Germany.

b Department of Plant Pathology and Nebraska Center for Virology , University of Nebraska Lincoln , Lincoln , NE , USA.

出版信息

Channels (Austin). 2019 Dec;13(1):124-135. doi: 10.1080/19336950.2019.1605813.

Abstract

Some algal viruses have coding sequences for proteins with structural and functional characteristics of pore modules of complex K channels. Here we exploit the structural diversity among these channel orthologs to discover new basic principles of structure/function correlates in K channels. The analysis of three similar K channels with ≤ 86 amino acids (AA) shows that one channel (Kmpv) generates an ohmic conductance in HEK293 cells while the other two (Kmpv, Kmpv) exhibit typical features of canonical Kir channels. Like Kir channels, the rectification of the viral channels is a function of the K driving force. Reconstitution of Kmpv and Kmpv in planar lipid bilayers showed rapid channel fluctuations only at voltages negative of the K reversal voltage. This rectification was maintained in KCl buffer with 1 mM EDTA, which excludes blocking cations as the source of rectification. This means that rectification of the viral channels must be an inherent property of the channel. The structural basis for rectification was investigated by a chimera between rectifying and non-rectifying channels as well as point mutations making the rectifier similar to the ohmic conducting channel. The results of these experiments exclude the pore with pore helix and selectivity filter as playing a role in rectification. The insensitivity of the rectifier to point mutations suggests that tertiary or quaternary structural interactions between the transmembrane domains are responsible for this type of gating.

摘要

一些藻类病毒的编码序列具有复杂 K 通道孔模块的结构和功能特征的蛋白质。在这里,我们利用这些通道同源物之间的结构多样性来发现 K 通道结构/功能相关性的新基本原则。对具有≤86 个氨基酸 (AA) 的三种类似 K 通道的分析表明,一个通道 (Kmpv) 在 HEK293 细胞中产生欧姆电导,而另外两个通道 (Kmpv、Kmpv) 则表现出典型的经典 Kir 通道特征。与 Kir 通道一样,病毒通道的整流作用是 K 驱动力的函数。在平面脂质双层中重建 Kmpv 和 Kmpv 时,仅在电压低于 K 反转电压时才会出现快速通道波动。在含有 1mM EDTA 的 KCl 缓冲液中保持这种整流,这排除了阻塞阳离子作为整流源。这意味着病毒通道的整流必须是通道的固有特性。通过整流和非整流通道之间的嵌合体以及使整流器类似于欧姆传导通道的点突变来研究整流的结构基础。这些实验的结果排除了具有孔螺旋和选择性过滤器的孔在整流中的作用。整流器对点突变的不敏感性表明,跨膜结构域之间的三级或四级结构相互作用负责这种门控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeea/6527081/ba13a6414704/kchl-13-01-1605813-g001.jpg

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