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The Mutational Profile of the Yeast Genome Is Shaped by Replication

机译:酵母基因组的突变谱由复制形成

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摘要

Despite the scrutiny that has been directed for years at the yeast genome, relatively little is known about the impact of replication on the substitution dynamics in Saccharomyces cerevisiae. Here, we show that the mutation rate increases with the replication timing by more than 30% between the earliest and the latest replicating regions. In addition, we found a mutational asymmetry associated with the polarity of replication resulting in higher rates of substitutions toward C and A than toward G and T in leading strands (reciprocally more substitutions toward G and T in lagging strands). Such mutational asymmetries applied over long evolutionary periods should generate compositional skews between the two DNA strands. Thus, we show that the leading replicating strands present an excess of C over G and of A over T in the genome of S. cerevisiae (reciprocally an excess of G + T over C + A in lagging strands). We also show that the nucleotide frequencies at mutational equilibrium predict a compositional skew at equilibrium very close to the observed skew between leading and lagging strands, suggesting that compositional equilibrium has been nearly attained in the present day genome of S. cerevisiae. Surprisingly, the direction of this skew is inverted compared with the one in the human genome.
机译:尽管已经对酵母基因组进行了多年审查,但关于酿酒酵母中复制对取代动力学的影响的了解相对较少。在这里,我们表明,在最早和最新的复制区域之间,突变率随复制时间的增加而增加了30%以上。此外,我们发现与复制极性相关的突变不对称性导致前导链中对C和A的取代率高于对G和T的取代率(在落后链中对G和T的取代率更高)。长时间的进化周期中应用的这种突变不对称性将在两条DNA链之间产生成分偏斜。因此,我们表明,在酿酒酵母的基因组中,前导复制链呈现出比G过量的C和A于T的过量(在落后链中,相反地,C + A的过量G + T)。我们还表明,突变平衡处的核苷酸频率预示着平衡处的组成偏斜非常接近前导链和落后链之间的观察到的偏斜,这表明在酿酒酵母的当今基因组中几乎已经达到了组成平衡。令人惊讶的是,与人类基因组中的偏斜方向相反。

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