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首页> 外文期刊>Journal of Molecular Evolution >Evolutionary Constraints on Codon and Amino Acid Usage in Two Strains of Human Pathogenic Actinobacteria Tropheryma whipplei
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Evolutionary Constraints on Codon and Amino Acid Usage in Two Strains of Human Pathogenic Actinobacteria Tropheryma whipplei

机译:两种人类致病性放线菌属鞭毛体鞭毛虫的密码子和氨基酸使用的进化限制。

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摘要

The factors governing codon and amino acid usages in the predicted protein-coding sequences of Tropheryma whipplei TW08/27 and Twist genomes have been analyzed. Multivariate analysis identifies the replicational-transcriptional selection coupled with DNA strand-specific asymmetric mutational bias as a major driving force behind the significant interstrand variations in synonymous codon usage patterns in T. whipplei genes, while a residual intrastrand synonymous codon bias is imparted by a selection force operating at the level of translation. The strand-specific mutational pressure has little influence on the amino acid usage, for which the mean hydropathy level and aromaticity are the major sources of variation, both having nearly equal impact. In spite of the intracellular lifestyle, the amino acid usage in highly expressed gene products of T. whipplei follows the cost-minimization hypothesis. The products of the highly expressed genes of these relatively A + T-rich actinobacteria prefer to use the residues encoded by GC-rich codons, probably due to greater conservation of a GC-rich ancestral state in the highly expressed genes, as suggested by the lower values of the rate of nonsynonymous divergences between orthologous sequences of highly expressed genes from the two strains of T. whipplei. Both the genomes under study are characterized by the presence of two distinct groups of membrane-associated genes, products of which exhibit significant differences in primary and potential secondary structures as well as in the propensity of protein disorder.
机译:分析了支原体鞭毛体TW08 / 27和Twist基因组的预测蛋白编码序列中控制密码子和氨基酸使用的因素。多变量分析将复制-转录选择与DNA链特异性不对称突变偏倚结合在一起,将其作为鞭毛T.whipplei基因同义密码子使用模式中显着的链间变异背后的主要驱动力,而选择则赋予了残余的链内同义密码子偏倚强制在翻译级别进行操作。链特异性突变压力对氨基酸的使用影响很小,平均氨基酸水平和芳香性是变异的主要来源,两者的影响几乎相同。尽管存在细胞内生活方式,但是在鞭毛衣原体的高表达基因产物中氨基酸的使用遵循成本最小化的假设。这些相对富含A + T的放线菌的高表达基因的产物更喜欢使用富含GC的密码子编码的残基,这可能是由于高表达基因中富含GC的祖先状态的保守性更高,较低的T. whipplei两种菌株的高表达基因的直系同源序列之间的非同义异异率的值。这两个正在研究的基因组的特征是存在着两组不同的膜相关基因,它们的产物在一级和潜在二级结构以及蛋白质疾病的倾向方面表现出显着差异。

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