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Allele-Specific Chromosome Removal after Cas9 Cleavage in Human Embryos

机译:Cas9 Cas9乳化后的等位基因特异性染色体去除

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Correction of disease-causing mutations in human embryos holds the potential to reduce the burden of inherited genetic disorders and improve fertility treatments for couples with disease-causing mutations in lieu of embryo selection. Here, we evaluate repair outcomes of a Cas9-induced double-strand break (DSB) introduced on the paternal chromosome at the EYS locus, which carries a frameshift mutation causing blindness. We show that the most common repair outcome is microhomology-mediated end joining, which occurs during the first cell cycle in the zygote, leading to embryos with non-mosaic restoration of the reading frame. Notably, about half of the breaks remain unrepaired, resulting in an undetectable paternal allele and, after mitosis, loss of one or both chromosomal arms. Correspondingly, Cas9 off-target cleavage results in chromosomal losses and hemizygous indels because of cleavage of both alleles. These results demonstrate the ability to manipulate chromosome content and reveal significant challenges for mutation correction in human embryos.
机译:纠正人类胚胎中的致病突变有可能减轻遗传性遗传疾病的负担,并改善对具有致病突变的夫妇的生育治疗,以代替胚胎选择。在这里,我们评估了Cas9诱导的双链断裂(DSB)的修复结果,该双链断裂引入了EYS位点的父系染色体,携带移码突变导致失明。我们发现,最常见的修复结果是微同源性介导的末端连接,这种连接发生在合子的第一个细胞周期,导致胚胎阅读框的非镶嵌恢复。值得注意的是,大约一半的断裂仍然没有修复,导致无法检测到父系等位基因,并且在有丝分裂后,失去一条或两条染色体臂。相应地,由于两个等位基因的切割,Cas9脱靶切割导致染色体丢失和半合子指数。这些结果证明了操纵染色体内容的能力,并揭示了人类胚胎突变纠正的重大挑战。

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