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一个进化上保守的氨基酸网络介导电压依赖性钾通道的门控。

An evolutionarily conserved network of amino acids mediates gating in voltage-dependent potassium channels.

作者信息

Fleishman Sarel J, Yifrach Ofer, Ben-Tal Nir

机构信息

Department of Biochemistry, George S. Wise Faculty of Life Sciences, Tel-Aviv University, Ramat Aviv 69978, Israel.

出版信息

J Mol Biol. 2004 Jul 2;340(2):307-18. doi: 10.1016/j.jmb.2004.04.064.

Abstract

A novel sequence-analysis technique for detecting correlated amino acid positions in intermediate-size protein families (50-100 sequences) was developed, and applied to study voltage-dependent gating of potassium channels. Most contemporary methods for detecting amino acid correlations within proteins use very large sets of data, typically comprising hundreds or thousands of evolutionarily related sequences, to overcome the relatively low signal-to-noise ratio in the analysis of co-variations between pairs of amino acid positions. Such methods are impractical for voltage-gated potassium (Kv) channels and for many other protein families that have not yet been sequenced to that extent. Here, we used a phylogenetic reconstruction of paralogous Kv channels to follow the evolutionary history of every pair of amino acid positions within this family, thus increasing detection accuracy of correlated amino acids relative to contemporary methods. In addition, we used a bootstrapping procedure to eliminate correlations that were statistically insignificant. These and other measures allowed us to increase the method's sensitivity, and opened the way to reliable identification of correlated positions even in intermediate-size protein families. Principal-component analysis applied to the set of correlated amino acid positions in Kv channels detected a network of inter-correlated residues, a large fraction of which were identified as gating-sensitive upon mutation. Mapping the network of correlated residues onto the 3D structure of the Kv channel from Aeropyrum pernix disclosed correlations between residues in the voltage-sensor paddle and the pore region, including regions that are involved in the gating transition. We discuss these findings with respect to the evolutionary constraints acting on the channel's various domains. The software is available on our website

摘要

我们开发了一种用于检测中等规模蛋白质家族(50 - 100个序列)中相关氨基酸位置的新型序列分析技术,并将其应用于研究钾通道的电压依赖性门控。大多数用于检测蛋白质内氨基酸相关性的当代方法使用非常大的数据集,通常包含数百或数千个进化相关序列,以克服氨基酸位置对之间共变分析中相对较低的信噪比。此类方法对于电压门控钾(Kv)通道以及许多其他尚未测序到如此程度的蛋白质家族而言并不实用。在这里,我们使用旁系同源Kv通道的系统发育重建来追踪该家族内每对氨基酸位置的进化历史,从而相对于当代方法提高相关氨基酸的检测准确性。此外,我们使用了自展程序来消除统计上不显著的相关性。这些措施以及其他措施使我们能够提高该方法的灵敏度,并为即使在中等规模蛋白质家族中可靠识别相关位置开辟了道路。对Kv通道中相关氨基酸位置集进行的主成分分析检测到一个相互关联的残基网络,其中很大一部分在突变时被确定为对门控敏感。将相关残基网络映射到嗜热栖热菌Kv通道的三维结构上,揭示了电压传感器桨叶和孔区域中残基之间的相关性,包括参与门控转变的区域。我们根据作用于通道各个结构域的进化限制来讨论这些发现。该软件可在我们的网站上获取。

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