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iPSCs and fibroblast subclones from the same fibroblast population contain comparable levels of sequence variations

机译:来自相同成纤维细胞群的iPSC和成纤维细胞亚克隆包含相当水平的序列变异

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摘要

Genome integrity of induced pluripotent stem cells (iPSCs) has been extensively studied in recent years, but it is still unclear whether iPSCs contain more genomic variations than cultured somatic cells. One important question is the origin of genomic variations detected in iPSCs–whether iPSC reprogramming induces such variations. Here, we undertook a unique approach by deriving fibroblast subclones and clonal iPSC lines from the same fibroblast population and applied next-generation sequencing to compare genomic variations in these lines. Targeted deep sequencing of parental fibroblasts revealed that most variants detected in clonal iPSCs and fibroblast subclones were rare variants inherited from the parental fibroblasts. Only a small number of variants remained undetectable in the parental fibroblasts, which were thus likely to be de novo. Importantly, the clonal iPSCs and fibroblast subclones contained comparable numbers of de novo variants. Collectively, our data suggest that iPSC reprogramming is not mutagenic.
机译:近年来,对诱导多能干细胞(iPSC)的基因组完整性进行了广泛的研究,但仍不清楚iPSC是否包含比培养的体细胞更多的基因组变异。一个重要的问题是在iPSC中检测到的基因组变异的起源-iPSC重新编程是否会引起这种变异。在这里,我们采用了一种独特的方法,即从同一成纤维细胞群体中衍生出成纤维细胞亚克隆和iPSC克隆系,并应用了下一代测序技术来比较这些系的基因组变异。亲本成纤维细胞的靶向深度测序表明,在克隆iPSC和成纤维细胞亚克隆中检测到的大多数变异体都是从亲本成纤维细胞遗传的罕见变异体。在亲本成纤维细胞中仍然只有少数变体无法检测到,因此很可能是新生的。重要的是,克隆的iPSC和成纤维细胞亚克隆包含相当数量的从头变异体。总的来说,我们的数据表明iPSC重编程不是诱变的。

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