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定向突变压力影响细菌中蛋白质的氨基酸组成和疏水性。

Directional mutational pressure affects the amino acid composition and hydrophobicity of proteins in bacteria.

作者信息

Gu X, Hewett-Emmett D, Li W H

机构信息

Human Genetics Center, SPH, University of Texas, Houston 77225, USA.

出版信息

Genetica. 1998;102-103(1-6):383-91.

PMID:9720290
Abstract

The relationship between change in genomic GC content and protein evolution in bacteria was studied by simple correlational analysis (at the genus level) and by Felsenstein's (1985) independent contrast test. We first used the dnaA gene in bacteria as an example to show (1) that the amino acid composition of a protein can be dramatically affected by mutational pressure (the genomic GC content), (2) that surprisingly, deleting relatively closely-related genera may increase rather than decrease the correlation between genomic GC content and amino acid composition, and (3) that most unexpectedly, as the genomic GC content increases, both strongly hydrophobic and strongly hydrophilic amino acids tend to change to ambivalent amino acids, suggesting that the majority of these amino acid substitutions are not caused by positive Darwinian selection. These patterns were then also shown to hold for the 14 other genes studied, indicating their generality for the evolution of bacterial proteins. As directional mutation pressure can affect the amino acid composition of proteins, it may mislead phylogenetic inference, even if protein instead of DNA sequences are used.

摘要

通过简单的相关性分析(在属水平上)以及费尔斯滕森(1985年)的独立对比检验,研究了细菌基因组GC含量变化与蛋白质进化之间的关系。我们首先以细菌中的dnaA基因为例,表明:(1)蛋白质的氨基酸组成会受到突变压力(基因组GC含量)的显著影响;(2)令人惊讶的是,删除亲缘关系相对较近的属可能会增加而非降低基因组GC含量与氨基酸组成之间的相关性;(3)最出乎意料的是,随着基因组GC含量的增加,强疏水性和强亲水性氨基酸都倾向于转变为两性氨基酸,这表明这些氨基酸替代中的大多数并非由正向达尔文选择引起。然后还表明,这些模式也适用于所研究的其他14个基因,表明它们在细菌蛋白质进化中具有普遍性。由于定向突变压力会影响蛋白质的氨基酸组成,因此即使使用蛋白质而非DNA序列,它也可能误导系统发育推断。

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