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利用进化、位置和顺序对氨基酸同型重复序列进行上下文特征分析。

Context characterization of amino acid homorepeats using evolution, position, and order.

作者信息

Mier Pablo, Alanis-Lobato Gregorio, Andrade-Navarro Miguel A

机构信息

Faculty of Biology, Johannes Gutenberg University Mainz, Gresemundweg 2, Mainz, 55128, Germany.

Institute of Molecular Biology, Ackermannweg 4, Mainz, 55128, Germany.

出版信息

Proteins. 2017 Apr;85(4):709-719. doi: 10.1002/prot.25250. Epub 2017 Feb 6.

Abstract

Amino acid repeats, or homorepeats, are low complexity protein motifs consisting of tandem repetitions of a single amino acid. Their presence and relative number vary in different proteomes, and some studies have tried to address this variation, proteome by proteome. In this work, we present a full characterization of amino acid homorepeats across evolution. We studied the presence and differential usage of each possible homorepeat in proteomes from various taxonomic groups, using clusters of very similar proteins to eliminate redundancy. The position of each amino acid repeat within proteins, and the order of co-occurring amino acid repeats were also addressed. As a result, we present evidence about the unevenly evolution of homorepeats, as well as the functional implications of their relative position in proteins. We discuss some of these cases in their taxonomic context. Collectively, our results show evolutionary and positional signals that suggest that homorepeats have biological function, likely creating unspecific protein interactions or modulating specific interactions in a context dependent manner. In conclusion, our work supports the functional importance of homorepeats and establishes a basis for the study of other low complexity repeats. Proteins 2017; 85:709-719. © 2016 Wiley Periodicals, Inc.

摘要

氨基酸重复序列,即同型重复序列,是由单个氨基酸串联重复组成的低复杂性蛋白质基序。它们在不同蛋白质组中的存在情况和相对数量各不相同,一些研究试图逐个蛋白质组地探讨这种差异。在这项工作中,我们全面描述了进化过程中的氨基酸同型重复序列。我们研究了来自不同分类群的蛋白质组中每种可能的同型重复序列的存在情况和差异使用情况,利用非常相似的蛋白质簇来消除冗余。我们还探讨了蛋白质中每个氨基酸重复序列的位置以及同时出现的氨基酸重复序列的顺序。结果,我们提供了关于同型重复序列进化不均衡的证据,以及它们在蛋白质中相对位置的功能含义。我们在分类背景下讨论了其中一些情况。总体而言,我们的结果显示出进化和位置信号,表明同型重复序列具有生物学功能,可能以依赖于上下文的方式产生非特异性蛋白质相互作用或调节特异性相互作用。总之,我们的工作支持了同型重复序列的功能重要性,并为研究其他低复杂性重复序列奠定了基础。《蛋白质》2017年;85:709 - 719。© 2016威利期刊公司。

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