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Optimized sgRNA design to maximize activity and minimize off-target effects of CRISPR-Cas9

机译:优化的sgRNA设计可最大化活性并最大程度降低CRISPR-Cas9的脱靶效应

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摘要

CRISPR-Cas9-based genetic screens are a powerful new tool in biology. By simply altering the sequence of the single-guide RNA (sgRNA), one can reprogram Cas9 to target different sites in the genome with relative ease, but the on-target activity and off-target effects of individual sgRNAs can vary widely. Here, we use recently devised sgRNA design rules to create human and mouse genome-wide libraries, perform positive and negative selection screens and observe that the use of these rules produced improved results. Additionally, we profile the off-target activity of thousands of sgRNAs and develop a metric to predict off-target sites. We incorporate these findings from large-scale, empirical data to improve our computational design rules and create optimized sgRNA libraries that maximize on-target activity and minimize off-target effects to enable more effective and efficient genetic screens and genome engineering.
机译:基于CRISPR-Cas9的基因筛选是生物学中强大的新工具。通过简单地改变单向导RNA(sgRNA)的序列,就可以相对容易地将Cas9重新编程为靶向基因组中的不同位点,但是单个sgRNA的靶向活性和脱靶作用可以相差很大。在这里,我们使用最近设计的sgRNA设计规则来创建人类和小鼠全基因组文库,进行正负选择筛选,并观察到这些规则的使用产生了改进的结果。此外,我们分析了数千个sgRNA的脱靶活性,并开发了一种指标来预测脱靶位点。我们从大规模的经验数据中整合了这些发现,以改善我们的计算设计规则,并创建优化的sgRNA库,以最大程度地提高靶标活性并最小化脱靶效应,从而实现更有效的基因筛选和基因组工程。

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