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Multiplexed Cas9 targeting reveals genomic location effects and gRNA-based staggered breaks influencing mutation efficiency

机译:多重Cas9靶向揭示了基因组位置效应和基于gRNA的交错突变影响突变效率

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摘要

Understanding the impact of guide RNA (gRNA) and genomic locus on CRISPR-Cas9 activity is crucial to design effective gene editing assays. However, it is challenging to profile Cas9 activity in the endogenous cellular environment. Here we leverage our TRIP technology to integrate ~ 1k barcoded reporter genes in the genomes of mouse embryonic stem cells. We target the integrated reporters (IRs) using RNA-guided Cas9 and characterize induced mutations by sequencing. We report that gRNA-sequence and IR locus explain most variation in mutation efficiency. Predominant insertions of a gRNA-specific nucleotide are consistent with template-dependent repair of staggered DNA ends with 1-bp 5′ overhangs. We confirm that such staggered ends are induced by Cas9 in mouse pre-B cells. To explain observed insertions, we propose a model generating primarily blunt and occasionally staggered DNA ends. Mutation patterns indicate that gRNA-sequence controls the fraction of staggered ends, which could be used to optimize Cas9-based insertion efficiency.
机译:了解指导RNA(gRNA)和基因组基因座对CRISPR-Cas9活性的影响对于设计有效的基因编辑分析至关重要。然而,在内源性细胞环境中分析Cas9活性是具有挑战性的。在这里,我们利用TRIP技术将〜1k条码报告基因整合到小鼠胚胎干细胞的基因组中。我们使用RNA引导的Cas9靶向整合的报道分子(IR),并通过测序表征诱导的突变。我们报告说,gRNA序列和IR位点解释了突变效率的大多数变化。 gRNA特异性核苷酸的主要插入与具有1 bp 5'突出端的交错DNA末端的模板依赖性修复相一致。我们证实,Cas9在小鼠前B细胞中诱导了这种错开的末端。为了解释观察到的插入,我们提出了一个模型,该模型主要生成钝的DNA末端,有时还交错排列。突变模式表明gRNA序列控制着交错末端的比例,可用于优化基于Cas9的插入效率。

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