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Inaugural Article: Small potassium ion channel proteins encoded by chlorella viruses

机译:就职文章:小球藻病毒编码的小钾离子通道蛋白

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摘要

Kcv, a 94-aa protein encoded by Paramecium bursaria chlorella virus 1, is the smallest known protein to form a functional potassium ion channel and basically corresponds to the “pore module” of potassium channels. Both viral replication and channel activity are inhibited by the ion channel blockers barium and amantadine but not by cesium. Genes encoding Kcv-like proteins were isolated from 40 additional chlorella viruses. Differences in 16 of the 94 amino acids were detected, producing six Kcv-like proteins with amino acid substitutions occurring in most of the functional domains of the protein (N terminus, transmembrane 1, pore helix, selectivity filter, and transmembrane 2). The six proteins form functional potassium selective channels in Xenopus oocytes with different properties including altered current kinetics and inhibition by cesium. The amino acid changes together with the different properties observed in the six Kcv-like channels will be used to guide site-directed mutations, either singularly or in combination, to identify key amino acids that confer specific properties to Kcv.
机译:Kcv是一种由草履虫小球藻小球藻病毒1编码的94-aa蛋白,是形成功能性钾离子通道的已知最小蛋白,基本上对应于钾通道的“孔模块”。离子通道阻滞剂钡和金刚烷胺可抑制病毒复制和通道活性,而铯则不能。从另外40种小球藻病毒中分离出编码Kcv样蛋白的基因。检测到94个氨基酸中的16个存在差异,产生了6个Kcv样蛋白,在该蛋白的大多数功能域(N端,跨膜1,孔螺旋,选择性滤膜和跨膜2)中都发生了氨基酸取代。这六种蛋白质在非洲爪蟾卵母细胞中形成功能性钾选择性通道,具有不同的特性,包括改变的电流动力学和铯的抑制作用。氨基酸变化以及在六个Kcv样通道中观察到的不同特性将被用于单独或组合地指导定点突变,以鉴定赋予Kcv特定特性的关键氨基酸。

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