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Exosome-mediated horizontal gene transfer occurs in double-strand break repair during genome editing

机译:在基因组编辑期间,外鼻细胞介导的水平基因转移发生在双链断裂修复中

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The CRISPR-Cas9 system has been successfully applied in many organisms as a powerful genome-editing tool. Undoubtedly, it will soon be applied to human genome editing, including gene therapy. We have previously reported that unintentional DNA sequences derived from retrotransposons, genomic DNA, mRNA and vectors are captured at double-strand breaks (DSBs) sites when DSBs are introduced by the CRISPR-Cas9 system. Therefore, it is possible that unintentional insertions associated with DSB repair represent a potential risk for human genome editing gene therapies. To address this possibility, comprehensive sequencing of DSB sites was performed. Here, we report that exosome-mediated horizontal gene transfer occurs in DSB repair during genome editing. Exosomes are present in all fluids from living animals, including seawater and breathing mammals, suggesting that exosome-mediated horizontal gene transfer is the driving force behind mammalian genome evolution. The findings of this study highlight an emerging new risk for this leading-edge technology. Ryuichi Ono et al. show that a large number of unintentional trans-species gene transfers can occur when double-strand breaks are introduced by CRISPR-Cas9 in mouse eggs and cell lines. They propose a mechanism of trans-species horizontal gene transfer via double-strand break repair.
机译:CRISPR-CAS9系统已成功应用于许多生物体作为一种强大的基因组编辑工具。毫无疑问,它很快将应用于人类基因组编辑,包括基因治疗。我们之前报道,当DSB由CRISPR-CAS9系统引入DSB时,在双链断裂(DSB)位点,衍生自转移转渣,基因组DNA,mRNA和载体的无意的DNA序列。因此,可能与DSB修复相关的无意插入代表人类基因组编辑基因疗法的潜在风险。为解决这种可能性,执行DSB站点的全面排序。在这里,我们报告说,在基因组编辑期间,在DSB修复中发生外出介导的水平基因转移。外泌体存在于来自生物动物的所有液体中,包括海水和呼吸哺乳动物,表明外出介导的水平基因转移是哺乳动物基因组进化后的驱动力。本研究的调查结果突出了这种前沿技术的新风险。 ryuichi ono等。表明,当通过在小鼠卵和细胞系中的CRISPR-CAS9引入双链断裂时,可以发生大量无意的反式物种基因转移。它们提出了通过双链破裂修复的跨物种水平基因转移的机制。

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