首页> 外文期刊>Nucleic Acids Research >Proteome composition and codon usage in spirochaetes: species-specific and DNA strand-specific mutational biases.
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Proteome composition and codon usage in spirochaetes: species-specific and DNA strand-specific mutational biases.

机译:螺旋藻中的蛋白质组组成和密码子使用:物种特异性和DNA链特异性突变偏倚。

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摘要

The genomes of the spirochaetes Borrelia burgdorferi and Treponema pallidum show strong strand-specific skews in nucleotide composition, with the leading strand in replication being richer in G and T than the lagging strand in both species. This mutation bias results in codon usage and amino acid composition patterns that are significantly different between genes encoded on the two strands, in both species. There are also substantial differences between the species, with T.pallidum having a much higher G+C content than B. burgdorferi. These changes in amino acid and codon compositions represent neutral sequence change that has been caused by strong strand- and species-specific mutation pressures. Genes that have been relocated between the leading and lagging strands since B. burgdorferi and T.pallidum diverged from a common ancestor now show codon and amino acid compositions typical of their current locations. There is no evidence that translational selection operates on codon usage in highly expressed genes in these species, and the primary influence on codon usage is whether a gene is transcribed in the same direction as replication, or opposite to it. The dnaA gene in both species has codon usage patterns distinctive of a lagging strand gene, indicating that the origin of replication lies downstream of this gene, possibly within dnaN. Our findings strongly suggest that gene-finding algorithms that ignore variability within the genome may be flawed.
机译:螺旋藻疏螺旋体和苍白螺旋体的基因组在核苷酸组成上显示出强的链特异性偏斜,复制的前导链的G和T比两个物种的滞后链都要丰富。这种突变倾向导致两种物种中两条链上编码的基因之间的密码子使用和氨基酸组成模式显着不同。物种之间也存在实质性差异,苍白锥虫的G + C含量比伯氏疏螺旋体高得多。氨基酸和密码子组成的这些变化代表中性序列变化,该变化是由强烈的链和物种特异性突变压力引起的。自伯氏疏螺旋体和塔氏螺旋体从共同祖先分出以来,已在前导链和滞后链之间重新定位的基因现在显示出其当前位置的典型密码子和氨基酸组成。没有证据表明翻译选择取决于这些物种中高表达基因的密码子使用,而对密码子使用的主要影响是基因是以与复制相同的方向转录还是与之相反转录。两种物种中的dnaA基因都具有与落后链基因不同的密码子使用方式,这表明复制起点位于该基因的下游,可能在dnaN内。我们的发现强烈表明,忽略基因组内部变异性的基因发现算法可能存在缺陷。

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