Trends in Codon and Amino Acid Usage in Human Pathogen Tropheryma Whipplei, the only Known Actinobacteria with Reduced Genome

Sabyasachi Das, Sandip Paul, C. Dutta
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Abstract

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 inter-strand variations in synonymous codon usage patterns in T. whipplei genes, while a residual intra-strand 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 life-style, the amino acid usage in highly expressed gene products of T. whipplei follows the cost-minimization hypothesis. 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.
人类致病菌惠氏滋养菌(唯一已知的基因组减少的放线菌)密码子和氨基酸使用趋势
本文分析了疣虫TW08/27和Twist基因组预测蛋白编码序列密码子和氨基酸使用的影响因素。多变量分析表明,复制-转录选择与DNA链特异性不对称突变偏差是T. whipplei基因中同义密码子使用模式显著差异背后的主要驱动力,而剩余的链内同义密码子偏差是由翻译水平上的选择力赋予的。链特异性突变压力对氨基酸利用的影响不大,平均亲水性和芳香性是主要的变异来源,两者的影响几乎相等。尽管存在胞内生活方式,但在高表达基因产物中氨基酸的使用遵循成本最小化假设。所研究的两个基因组都以存在两组不同的膜相关基因为特征,其产物在一级和潜在的二级结构以及蛋白质紊乱的倾向方面表现出显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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