支原体基因组CpG抑制的原因分析。

M Goto, T Washio, M Tomita
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引用次数: 14

摘要

已知一些细菌基因组具有低CpG二核苷酸频率。虽然其原因尚不清楚,但CpG的频率在生殖支原体基因组中被显著抑制,而在肺炎支原体基因组中则没有。我们比较了两个近亲物种的同源基因对,分析了这两个基因组之间的CpG替换模式。我们还将基因组序列分为三个区域:蛋白质编码区、非编码区和rna编码区,并获得了每种生物每个区域的CpG频率。结果表明,CpG二核苷酸在蛋白质编码区和非编码区均具有较低的观测/预期比值;而这一比例在rna编码区处于正常范围。我们的研究结果表明,支原体基因组的CpG抑制不是由(1)氨基酸使用偏倚引起的;(2)同义密码子使用偏差;(3)宿主基因组中CpG甲基转移酶的甲基化作用。相反,我们认为可能是某种全球压力,例如DNA稳定性或复制优势的全基因组压力,降低了整个基因组的CpG,这反过来导致了密码子使用的偏倚。
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Causal analysis of CpG suppression in the Mycoplasma genome.

Some bacterial genomes are known to have low CpG dinucleotide frequencies. While their causes are not clearly understood, the frequency of CpG is suppressed significantly in the genome of Mycoplasma genitalium, but not in that of Mycoplasma pneumoniae. We compared orthologous gene pairs of the two closely related species to analyze CpG substitution patterns between these two genomes. We also divided genome sequences into three regions: protein-coding, noncoding, and RNA-coding, and obtained the CpG frequencies for each region for each organism. It was found that the observed/expected ratio of CpG dinucleotides is low in both the protein-coding and noncoding regions; while that ratio is in the normal range in the RNA-coding region. Our results indicate that CpG suppression of the Mycoplasma genome is not caused by (1) biased usage amino acid; (2) biased usage of synonymous codon; or (3) methylation effects by the CpG methyltransferase in the genomes of their hosts. Instead, we consider it likely that a certain global pressure, such as genome-wide pressure for the advantages of DNA stability or replication, has the effect of decreasing CpG over the entire genome, which, in turn, resulted in the biased codon usage.

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