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一个自然突变等位基因塑造了小鼠突变谱的变异。

A natural mutator allele shapes mutation spectrum variation in mice.

机构信息

Department of Genome Sciences, University of Washington, Seattle, WA, USA.

Department of Genetics, Genomics and Informatics, University of Tennessee Health Science Center, Memphis, TN, USA.

出版信息

Nature. 2022 May;605(7910):497-502. doi: 10.1038/s41586-022-04701-5. Epub 2022 May 11.

Abstract

Although germline mutation rates and spectra can vary within and between species, common genetic modifiers of the mutation rate have not been identified in nature. Here we searched for loci that influence germline mutagenesis using a uniquely powerful resource: a panel of recombinant inbred mouse lines known as the BXD, descended from the laboratory strains C57BL/6J (B haplotype) and DBA/2J (D haplotype). Each BXD lineage has been maintained by brother-sister mating in the near absence of natural selection, accumulating de novo mutations for up to 50 years on a known genetic background that is a unique linear mosaic of B and D haplotypes. We show that mice inheriting D haplotypes at a quantitative trait locus on chromosome 4 accumulate C>A germline mutations at a 50% higher rate than those inheriting B haplotypes, primarily owing to the activity of a C>A-dominated mutational signature known as SBS18. The B and D quantitative trait locus haplotypes encode different alleles of Mutyh, a DNA repair gene that underlies the heritable cancer predisposition syndrome that causes colorectal tumors with a high SBS18 mutation load. Both B and D Mutyh alleles are present in wild populations of Mus musculus domesticus, providing evidence that common genetic variation modulates germline mutagenesis in a model mammalian species.

摘要

尽管种内和种间的生殖系突变率和突变谱可能存在差异,但尚未在自然界中发现常见的遗传突变率修饰因子。在这里,我们利用一个独特的强大资源——一组称为 BXD 的重组近交系小鼠,来寻找影响生殖系诱变的基因座,这些小鼠来自实验室品系 C57BL/6J(B 单倍型)和 DBA/2J(D 单倍型)。每个 BXD 品系都是通过兄妹交配维持的,几乎没有自然选择,在已知的遗传背景上积累了长达 50 年的新突变,该背景是 B 和 D 单倍型的独特线性镶嵌体。我们表明,在染色体 4 上的一个数量性状基因座上继承 D 单倍型的小鼠,其 C>A 生殖系突变率比继承 B 单倍型的小鼠高 50%,这主要归因于一种称为 SBS18 的 C>A 主导的突变特征的活性。B 和 D 数量性状基因座单倍型编码 DNA 修复基因 Mutyh 的不同等位基因,该基因是导致结直肠肿瘤具有高 SBS18 突变负荷的遗传性癌症易感性综合征的基础。B 和 D Mutyh 等位基因都存在于野生的 Mus musculus domesticus 种群中,这为常见的遗传变异在模型哺乳动物物种中调节生殖系诱变提供了证据。

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