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Early divergence of mutational processes in human fetal tissues

机译:人类胎儿组织中突变过程的早期分歧

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摘要

A developing human fetus needs to balance rapid cellular expansion with maintaining genomic stability. Here, we accurately quantified and characterized somatic mutation accumulation in fetal tissues by analyzing individual stem cells from human fetal liver and intestine. Fetal mutation rates were about fivefold higher than in tissue-matched adult stem cells. The mutational landscape of fetal intestinal stem cells resembled that of adult intestinal stem cells, while the mutation spectrum of fetal liver stem cells is distinct from stem cells of the fetal intestine and the adult liver. Our analyses indicate that variation in mutational mechanisms, including oxidative stress and spontaneous deamination of methylated cytosines, contributes to the observed divergence in mutation accumulation patterns and drives genetic mosaicism in humans.
机译:发育中的胎儿需要在细胞快速扩张与维持基因组稳定性之间取得平衡。在这里,我们通过分析人类胎儿肝脏和肠道的单个干细胞,准确地定量和表征了胎儿组织中的体细胞突变积累。胎儿突变率比组织匹配的成年干细胞高约五倍。胎儿肠道干细胞的突变态势与成年肠道干细胞的突变态势相似,而胎儿肝干细胞的突变谱不同于胎儿肠道和成年肝脏的干细胞。我们的分析表明,突变机制的变异,包括氧化应激和甲基化胞嘧啶的自发脱氨,有助于观察到变异积累模式的差异,并驱动人类遗传镶嵌。

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