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Engineered CRISPR/Cas9 enzymes improve discrimination by slowing DNA cleavage to allow release of off-target DNA

机译:工程式CRISPR / CAS9酶通过减缓DNA裂解来改善歧视,以允许释放偏移的DNA

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CRISPR/Cas9 is a programmable genome editing tool widely used for biological applications and engineered Cas9s have increased discrimination against off-target cleavage compared with wild-type Streptococcus pyogenes (SpCas9) in vivo. To understand the basis for improved discrimination against off-target DNA containing important mismatches at the distal end of the guide RNA, we performed kinetic analyses on the high-fidelity (Cas9-HF1) and hyper-accurate (HypaCas9) engineered Cas9 variants. We show that DNA cleavage is impaired by more than 100- fold for the high-fidelity variants. The high-fidelity variants improve discrimination by slowing the observed rate of cleavage without increasing the rate of DNA rewinding and release. The kinetic partitioning favors release rather than cleavage of a bound off-target substrate only because the cleavage rate is so low. Further improvement in discrimination may require engineering increased rates of dissociation of off-target DNA.
机译:CRISPR / CAS9是一种可编程基因组编辑工具,广泛用于生物应用,与体内野生型链球菌(SPCAS9)相比,工程CAS9S与野生型链球菌(SPCAS9)相比增加了对靶切割的识别。要了解改善鉴别对导向RNA远端的偏离目标DNA的偏离判断的基础,我们对高保真(CAS9-HF1)和超准确(Hypacas9)工程Cas9变体进行动力学分析。我们表明,对于高保真变体,DNA裂解损害超过100倍。高保真变体通过减缓观察到的裂解率而不增加DNA重绕和释放速率来改善歧视。动力学分区释放而不是仅仅因为裂解率如此较低而释放而不是裂解结合的脱靶衬底。进一步改善歧视可能需要工程增加的偏离靶DNA的解离率。

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