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由于三级结构导致密码子间存在依赖性的蛋白质进化。

Protein evolution with dependence among codons due to tertiary structure.

作者信息

Robinson Douglas M, Jones David T, Kishino Hirohisa, Goldman Nick, Thorne Jeffrey L

机构信息

Bioinformatics Research Center, North Carolina State University, USA.

出版信息

Mol Biol Evol. 2003 Oct;20(10):1692-704. doi: 10.1093/molbev/msg184. Epub 2003 Jul 28.

Abstract

Markovian models of protein evolution that relax the assumption of independent change among codons are considered. With this comparatively realistic framework, an evolutionary rate at a site can depend both on the state of the site and on the states of surrounding sites. By allowing a relatively general dependence structure among sites, models of evolution can reflect attributes of tertiary structure. To quantify the impact of protein structure on protein evolution, we analyze protein-coding DNA sequence pairs with an evolutionary model that incorporates effects of solvent accessibility and pairwise interactions among amino acid residues. By explicitly considering the relationship between nonsynonymous substitution rates and protein structure, this approach can lead to refined detection and characterization of positive selection. Analyses of simulated sequence pairs indicate that parameters in this evolutionary model can be well estimated. Analyses of lysozyme c and annexin V sequence pairs yield the biologically reasonable result that amino acid replacement rates are higher when the replacements lead to energetically favorable proteins than when they destabilize the proteins. Although the focus here is evolutionary dependence among codons that is associated with protein structure, the statistical approach is quite general and could be applied to diverse cases of evolutionary dependence where surrogates for sequence fitness can be measured or modeled.

摘要

我们考虑了放宽密码子间独立变化假设的蛋白质进化马尔可夫模型。在这个相对现实的框架下,一个位点的进化速率既可以取决于该位点的状态,也可以取决于周围位点的状态。通过允许位点间存在相对一般的依赖结构,进化模型可以反映三级结构的属性。为了量化蛋白质结构对蛋白质进化的影响,我们用一个结合了溶剂可及性和氨基酸残基间成对相互作用影响的进化模型来分析蛋白质编码DNA序列对。通过明确考虑非同义替换率与蛋白质结构之间的关系,这种方法能够实现对正选择更精确的检测和特征描述。对模拟序列对的分析表明,该进化模型中的参数能够得到很好的估计。对溶菌酶c和膜联蛋白V序列对的分析得出了生物学上合理的结果:当替换导致蛋白质能量上更有利时,氨基酸替换率高于当它们使蛋白质不稳定时的情况。尽管这里的重点是与蛋白质结构相关的密码子间的进化依赖性,但该统计方法相当通用,可应用于序列适应性替代物能够被测量或建模的各种进化依赖性情况。

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