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翻译最优密码子与蛋白质中结构敏感位点相关联。

Translationally optimal codons associate with structurally sensitive sites in proteins.

作者信息

Zhou Tong, Weems Mason, Wilke Claus O

机构信息

Center for Computational Biology and Bioinformatics, The University of Texas at Austin, TX, USA.

出版信息

Mol Biol Evol. 2009 Jul;26(7):1571-80. doi: 10.1093/molbev/msp070. Epub 2009 Apr 6.

Abstract

The mistranslation-induced protein misfolding hypothesis predicts that selection should prefer high-fidelity codons at sites at which translation errors are structurally disruptive and lead to protein misfolding and aggregation. To test this hypothesis, we analyzed the relationship between codon usage bias and protein structure in the genomes of four model organisms, Escherichia coli, yeast, fly, and mouse. Using both the Mantel-Haenszel procedure, which applies to categorical data, and a newly developed association test for continuous variables, we find that translationally optimal codons associate with buried residues and also with residues at sites where mutations lead to large changes in free energy (DeltaDeltaG). In each species, only a subset of all amino acids show this signal, but most amino acids show the signal in at least one species. By repeating the analysis on a reduced data set that excludes interdomain linkers, we show that our results are not caused by an association of rare codons with solvent-accessible linker regions. Finally, we find that our results depend weakly on expression level; the association between optimal codons and buried sites exists at all expression levels, but increases in strength as expression level increases.

摘要

误译导致的蛋白质错误折叠假说预测,在翻译错误具有结构破坏性并导致蛋白质错误折叠和聚集的位点,选择应倾向于高保真密码子。为了验证这一假说,我们分析了四种模式生物(大肠杆菌、酵母、果蝇和小鼠)基因组中密码子使用偏好与蛋白质结构之间的关系。通过使用适用于分类数据的曼特尔 - 亨泽尔程序以及新开发的针对连续变量的关联测试,我们发现翻译最优密码子与埋藏残基以及与突变导致自由能大幅变化(ΔΔG)的位点的残基相关联。在每个物种中,所有氨基酸中只有一部分显示出这种信号,但大多数氨基酸在至少一个物种中显示出该信号。通过在排除结构域间连接子的简化数据集上重复分析,我们表明我们的结果并非由稀有密码子与溶剂可及连接子区域的关联所导致。最后,我们发现我们的结果对表达水平的依赖性较弱;最优密码子与埋藏位点之间的关联在所有表达水平上都存在,但随着表达水平的增加而增强。

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