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Improving CRISPR-Cas specificity with chemical modifications in single-guide RNAs

机译:在单引导RNA中改善CRISPR-CAS特异性

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CRISPR systems have emerged as transformative tools for altering genomes in living cells with unprecedented ease, inspiring keen interest in increasing their specificity for perfectly matched targets. We have developed a novel approach for improving specificity by incorporating chemical modifications in guide RNAs (gRNAs) at specific sites in their DNA recognition sequence ('guide sequence') and systematically evaluating their on-target and off-target activities in biochemical DNA cleavage assays and cell-based assays. Our results show that a chemical modification (2'-O-methyl-3'-phosphonoacetate, or 'MP') incorporated at select sites in the ribosephosphate backbone of gRNAs can dramatically reduce off-target cleavage activities while maintaining high on-target performance, as demonstrated in clinically relevant genes. These findings reveal a unique method for enhancing specificity by chemically modifying the guide sequence in gRNAs. Our approach introduces a versatile tool for augmenting the performance of CRISPR systems for research, industrial and therapeutic applications.
机译:CRISPR系统已经出现为改变活细胞中的改变基因组的转化工具,以前所未有的轻松改变,鼓舞人心的兴趣增加他们对完全匹配的目标的特异性。我们通过在其DNA识别序列('指导序列')中的指导RNA(GRNA)中的化学修饰并在生化DNA裂解测定中掺入指导RNA(GRNA)中的化学修饰并在生物化学DNA裂解测定中进行系统评价它们的靶标和脱靶活性来改进一种新的方法和基于细胞的测定。我们的研究结果表明,在GRNA的核糖磷酸骨架中选择位点的化学改性(2'-O-甲基-3'-膦酸酯或'mP')可以显着减少脱靶切割活性,同时保持高目标性能,如在临床相关基因中所示。这些发现揭示了通过在GRNA中的导向序列化学改性引导序列来增强特异性的独特方法。我们的方法推出了一种多功能的工具,用于增强CRISPR系统进行研究,工业和治疗应用的性能。

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