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CRISPR GUARD protects off-target sites from Cas9 nuclease activity using short guide RNAs

机译:Crispr Guard使用短导射来保护Cas9核酸酶活性免受Cas9核酸酶活性的影响

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Precise genome editing using CRISPR-Cas9 is a promising therapeutic avenue for genetic diseases, although off-target editing remains a significant safety concern. Guide RNAs shorter than 16 nucleotides in length effectively recruit Cas9 to complementary sites in the genome but do not permit Cas9 nuclease activity. Here we describe CRISPR Guide RNA Assisted Reduction of Damage (CRISPR GUARD) as a method for protecting off-targets sites by co-delivery of short guide RNAs directed against off-target loci by competition with the on-target guide RNA. CRISPR GUARD reduces off-target mutagenesis while retaining on-target editing efficiencies with Cas9 and base editor. However, we discover that short guide RNAs can also support base editing if they contain cytosines within the deaminase activity window. We explore design rules and the universality of this method through in vitro studies and high-throughput screening, revealing CRISPR GUARD as a rapidly implementable strategy to improve the specificity of genome editing for most genomic loci. Finally, we create an online tool for CRISPR GUARD design.
机译:使用CRISPR-CAS9的精确基因组编辑是遗传疾病的有希望的治疗途径,尽管偏离目标编辑仍然是显着的安全问题。引导RNA短于16个核苷酸的长度有效地募集CAS9到基因组中的互补位点,但不允许CAS9核酸酶活性。在这里,我们描述了CRISPR导向RNA辅助减少损伤(CRISPR保护)作为保护偏离目标站点的方法,通过与靶向导向RNA的竞争通过竞争来保护偏离目标基因座的短指数RNA。 CRISPR保护减少了脱靶诱变,同时保留了CAS9和基本编辑器的目标编辑效率。但是,我们发现如果含有脱氨酶活性窗口中的细胞瘤,则还可以支持基础编辑的短导。我们通过体外研究和高通量筛选来探索这种方法的普遍性,揭示Crispr Guard作为一种快速可行的策略,以改善大多数基因组基因座的基因组编辑的特异性。最后,我们创建了一个用于CRISPR保护设计的在线工具。

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