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A Novel Set of Cas9 Fusion Proteins to Stimulate Homologous Recombination: Cas9-HRs

机译:一套小说Cas9融合蛋白来刺激同源重组:Cas9-HRs

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摘要

CRISPR- Cas9 has revolutionized genetic engineering. However, the inability to control double-strand break (DSB) repair has severely limited both therapeutic and academic applications. Many attempts have been made to control DSB repair choice. However, particularly in the case of larger edits, none have been able to bypass the rate-limiting step of homologous recombination (HR): long-range 5' end resection. Here, we describe a novel set of Cas9 fusions, Cas9-HRs, designed to bypass the rate-limitingstep of HR repair by simultaneously coupling initial and long-range end resection. Here, we demonstrate that Cas9-HRs can increase the rate of homology directed repair (HDR) by 2- to 2.5-fold and decrease p53 mediated cellular toxicity by two- to fourfold compared to Cas9 and are functional in multiple mammalian cell lines with minimal apparent editing site bias. These properties should make Cas9-HRs an attractive option for applications demanding increased HDR rates for long inserts and/or reduced p53pathway activation.
机译:CRISPR——Cas9基因发生了革命性变化工程。双链断裂修复严重(双边带)有限的治疗和学术应用程序。控制双边带修复的选择。对于较大的编辑,没有一个可以绕过同源的病原反应步骤复合(人力资源):远程5 '末端切除。在这里,我们描述一套小说Cas9融合,Cas9-HRs,为了绕过同时rate-limitingstep人力资源修复的耦合初始和远程端切除。在这里,我们表明,Cas9-HRs可以增加同源性定向修复率由2 - (HDR)2.5倍和p53介导细胞减少毒性Cas9和相比的两到四倍功能在多个哺乳动物细胞系以最小的明显编辑网站的偏见。属性应该Cas9-HRs诱人选择应用程序要求增加HDR长期利率p53pathway插入和/或减少激活。

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