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一种新型偏斜分析揭示了与遗传密码GC偏倚和PolIII α亚基异构体相关的替代不对称性。

A novel skew analysis reveals substitution asymmetries linked to genetic code GC-biases and PolIII a-subunit isoforms.

作者信息

Apostolou-Karampelis Konstantinos, Nikolaou Christoforos, Almirantis Yannis

机构信息

Institute of Biosciences and Applications, National Center for Scientific Research "Demokritos", 15310 Athens, Greece

Computational Genomics Group, Department of Biology, University of Crete, 71409 Heraklion, Greece.

出版信息

DNA Res. 2016 Aug;23(4):353-63. doi: 10.1093/dnares/dsw021. Epub 2016 Jun 26.

Abstract

Strand biases reflect deviations from a null expectation of DNA evolution that assumes strand-symmetric substitution rates. Here, we present strong evidence that nearest-neighbour preferences are a strand-biased feature of bacterial genomes, indicating neighbour-dependent substitution asymmetries. To detect such asymmetries we introduce an alignment free index (relative abundance skews). The profiles of relative abundance skews along coding sequences can trace the phylogenetic relations of bacteria, suggesting that the patterns of neighbour-dependent substitution strand-biases are not common among different lineages, but are rather species-specific. Analysis of neighbour-dependent and codon-site skews sheds light on the origins of substitution asymmetries. Via a simple model we argue that the structure of the genetic code imposes position-dependent substitution strand-biases along coding sequences, as a response to GC mutation pressure. Thus, the organization of the genetic code per se can lead to an uneven distribution of nucleotides among different codon sites, even when requirements for specific codons and amino-acids are not accounted for. Moreover, our results suggest that strand-biases in replication fidelity of PolIII α-subunit induce substitution asymmetries, both neighbour-dependent and independent, on a genome scale. The role of DNA repair systems, such as transcription-coupled repair, is also considered.

摘要

链偏向反映了与假设链对称替换率的DNA进化零期望的偏差。在这里,我们提供了强有力的证据,表明最近邻偏好是细菌基因组的一种链偏向特征,这表明存在依赖邻位的替换不对称性。为了检测这种不对称性,我们引入了一种无比对索引(相对丰度偏斜)。沿着编码序列的相对丰度偏斜图谱可以追踪细菌的系统发育关系,这表明依赖邻位的替换链偏向模式在不同谱系中并不常见,而是具有物种特异性。对依赖邻位和密码子位点偏斜的分析揭示了替换不对称性的起源。通过一个简单的模型,我们认为遗传密码的结构会沿着编码序列施加依赖位置的替换链偏向,作为对GC突变压力的一种响应。因此,即使不考虑对特定密码子和氨基酸的需求,遗传密码本身的组织也会导致不同密码子位点之间核苷酸分布不均。此外,我们的结果表明,PolIII α亚基复制保真度中的链偏向会在基因组尺度上诱导依赖邻位和不依赖邻位的替换不对称性。我们还考虑了DNA修复系统(如转录偶联修复)的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd17/4991834/aea70b1de685/dsw021f1p.jpg

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