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在真核生物中,单核苷酸突变率在插入/缺失附近会增加。

Single-nucleotide mutation rate increases close to insertions/deletions in eukaryotes.

作者信息

Tian Dacheng, Wang Qiang, Zhang Pengfei, Araki Hitoshi, Yang Sihai, Kreitman Martin, Nagylaki Thomas, Hudson Richard, Bergelson Joy, Chen Jian-Qun

机构信息

State Key Laboratory of Pharmaceutical Biotechnology, Department of Biology, Nanjing University, Nanjing 210093, China.

出版信息

Nature. 2008 Sep 4;455(7209):105-8. doi: 10.1038/nature07175. Epub 2008 Jul 20.

Abstract

Mutation hotspots are commonly observed in genomic sequences and certain human disease loci, but general mechanisms for their formation remain elusive. Here we investigate the distribution of single-nucleotide changes around insertions/deletions (indels) in six independent genome comparisons, including primates, rodents, fruitfly, rice and yeast. In each of these genomic comparisons, nucleotide divergence (D) is substantially elevated surrounding indels and decreases monotonically to near-background levels over several hundred bases. D is significantly correlated with both size and abundance of nearby indels. In comparisons of closely related species, derived nucleotide substitutions surrounding indels occur in significantly greater numbers in the lineage containing the indel than in the one containing the ancestral (non-indel) allele; the same holds within species for single-nucleotide mutations surrounding polymorphic indels. We propose that heterozygosity for an indel is mutagenic to surrounding sequences, and use yeast genome-wide polymorphism data to estimate the increase in mutation rate. The consistency of these patterns within and between species suggests that indel-associated substitution is a general mutational mechanism.

摘要

突变热点在基因组序列和某些人类疾病位点中普遍存在,但其形成的一般机制仍不清楚。在这里,我们研究了在六个独立的基因组比较中,插入/缺失(indels)周围单核苷酸变化的分布,这些比较包括灵长类动物、啮齿动物、果蝇、水稻和酵母。在每一个这样的基因组比较中,核苷酸分歧(D)在indels周围显著升高,并在几百个碱基上单调下降至接近背景水平。D与附近indels的大小和丰度都显著相关。在亲缘关系较近的物种比较中,含有indel的谱系中,indels周围的衍生核苷酸替换数量显著多于含有祖先(非indel)等位基因的谱系;在物种内部,多态性indels周围的单核苷酸突变也是如此。我们提出,indel的杂合性对周围序列具有诱变作用,并利用酵母全基因组多态性数据来估计突变率的增加。这些模式在物种内部和物种之间的一致性表明,indel相关的替换是一种普遍的突变机制。

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