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Whole-genome mutational burden analysis of three pluripotency induction methods

机译:三种多能性诱导方法的全基因组突变负担分析

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摘要

There is concern that the stresses of inducing pluripotency may lead to deleterious DNA mutations in induced pluripotent stem cell (iPSC) lines, which would compromise their use for cell therapies. Here we report comparative genomic analysis of nine isogenic iPSC lines generated using three reprogramming methods: integrating retroviral vectors, non-integrating Sendai virus and synthetic mRNAs. We used whole-genome sequencing and de novo genome mapping to identify single-nucleotide variants, insertions and deletions, and structural variants. Our results show a moderate number of variants in the iPSCs that were not evident in the parental fibroblasts, which may result from reprogramming. There were only small differences in the total numbers and types of variants among different reprogramming methods. Most importantly, a thorough genomic analysis showed that the variants were generally benign. We conclude that the process of reprogramming is unlikely to introduce variants that would make the cells inappropriate for therapy.
机译:令人关注的是,诱导多能性的压力可能导致诱导性多能干细胞(iPSC)系中有害的DNA突变,这会损害其在细胞治疗中的用途。在这里,我们报告了使用三种重编程方法生成的9个同基因iPSC系的比较基因组分析:整合逆转录病毒载体,非整合仙台病毒和合成mRNA。我们使用全基因组测序和从头基因组作图来鉴定单核苷酸变体,插入和缺失以及结构变体。我们的结果表明,iPSC中存在中等数量的变体,这些变体在亲本成纤维细胞中并不明显,这可能是重编程导致的。在不同的重编程方法之间,变体的总数和类型只有很小的差异。最重要的是,彻底的基因组分析表明,这些变体通常是良性的。我们得出的结论是,重新编程的过程不太可能引入会使细胞不适用于治疗的变体。

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