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8-oxoguanine causes spontaneous de novo germline mutations in mice

机译:8-氧鸟嘌呤导致小鼠自发的 de novo 种系突变

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Spontaneous germline mutations generate genetic diversity in populations of sexually reproductive organisms, and are thus regarded as a driving force of evolution. However, the cause and mechanism remain unclear. 8-oxoguanine (8-oxoG) is a candidate molecule that causes germline mutations, because it makes DNA more prone to mutation and is constantly generated by reactive oxygen species in vivo . We show here that endogenous 8-oxoG caused de novo spontaneous and heritable G to T mutations in mice, which occurred at different stages in the germ cell lineage and were distributed throughout the chromosomes. Using exome analyses covering 40.9?Mb of mouse transcribed regions, we found increased frequencies of G to T mutations at a rate of 2 × 10?7?mutations/base/generation in offspring of Mth1/Ogg1/Mutyh triple knockout (TOY-KO) mice, which accumulate 8-oxoG in the nuclear DNA of gonadal cells. The roles of MTH1, OGG1, and MUTYH are specific for the prevention of 8-oxoG-induced mutation, and 99% of the mutations observed in TOY-KO mice were G to T transversions caused by 8-oxoG; therefore, we concluded that 8-oxoG is a causative molecule for spontaneous and inheritable mutations of the germ lineage cells.
机译:自发性生殖系突变在有性生殖生物种群中产生遗传多样性,因此被视为进化的驱动力。但是,其原因和机制仍不清楚。 8-氧鸟嘌呤(8-oxoG)是引起种系突变的候选分子,因为它使DNA更易于突变,并在体内由活性氧不断产生。我们在这里显示,内源性的8-oxoG在小鼠中引起了新的自发和可遗传的G到T突变,这种突变发生在生殖细胞谱系的不同阶段,并分布在整个染色体中。使用覆盖小鼠转录区40.9?Mb的外显子组分析,我们发现Mth1 / Ogg1 /后代的G到T突变频率以2×10 ?7 ?突变/碱基/世代的速率增加Mutyh三基因敲除(TOY-KO)小鼠,其在性腺细胞的核DNA中积累了8-oxoG。 MTH1,OGG1和MUTYH的作用对于预防8-oxoG引起的突变具有特异性,在TOY-KO小鼠中观察到的突变中有99%是由8-oxoG引起的G向T转化;因此,我们得出的结论是8-oxoG是生殖细胞系自发和可遗传突变的致病分子。

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