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Improving the efficiency of precise genome editing with site-specific Cas9-oligonucleotide conjugates

机译:提高特定于特定的Cas9-寡核苷酸缀合物的精确基因组编辑的效率

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摘要

Site-specific chemical conjugation of proteins can enhance their therapeutic and diagnostic utility but has seldom been applied to CRISPR-Cas9, which is a rapidly growing field with great therapeutic potential. The low efficiency of homology-directed repair remains a major hurdle in CRISPR-Cas9–mediated precise genome editing, which is limited by low concentration of donor DNA template at the cleavage site. In this study, we have developed methodology to site-specifically conjugate oligonucleotides to recombinant Cas9 protein containing a genetically encoded noncanonical amino acid with orthogonal chemical reactivity. The Cas9-oligonucleotide conjugates recruited an unmodified donor DNA template to the target site through base pairing, markedly increasing homology-directed repair efficiency in both human cell culture and mouse zygotes. These chemically modified Cas9 mutants provide an additional tool, one that is complementary to chemically modified nucleic acids, for improving the utility of CRISPR-Cas9–based genome-editing systems.
机译:蛋白质的特异性化学缀合可以增强它们的治疗和诊断用途,但很少应用于CRISPR-CAS9,这是一种迅速生长的潜力,具有良好的治疗潜力。同源定向修复的低效率仍然是CRISPR-CAS9介导的精确基因组编辑中的主要障碍,其受切割位点的低浓度供体DNA模板的限制。在这项研究中,我们已经开发了对含有具有正交化学反应性的遗传编码的非甘露糖氨基酸的重组Cas9蛋白的寡核苷酸的方法。 Cas9-寡核苷酸缀合物通过碱基配对募集未经修改的供体DNA模板,通过碱基配对,显着提高人细胞培养和小鼠Zygotes中的同源术治疗效率。这些化学改性的Cas9突变体提供了一种另外的工具,其与化学修饰的核酸互补,用于改善基于Cas9的基因组的基因组编辑系统的效用。

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