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Multiplex CRISPR/Cas9-based genome engineering enhanced by Drosha-mediated sgRNA-shRNA structure

机译:Drosha介导的sgRNA-shRNA结构增强了基于CRISPR / Cas9的多重基因组工程

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摘要

The clustered regularly interspaced short palindromic repeats (CRISPR) system has recently been developed into a powerful genome-editing technology, as it requires only two key components (Cas9 protein and sgRNA) to function and further enables multiplex genome targeting and homology-directed repair (HDR) based precise genome editing in a wide variety of organisms. Here, we report a novel and interesting strategy by using the Drosha-mediated sgRNA-shRNA structure to direct Cas9 for multiplex genome targeting and precise genome editing. For multiplex genome targeting assay, we achieved more than 9% simultaneous mutant efficiency for 3 genomic loci among the puromycin-selected cell clones. By introducing the shRNA against DNA ligase IV gene (LIG4) into the sgRNA-shRNA construct, the HDR-based precise genome editing efficiency was improved as more than 2-fold. Our works provide a useful tool for multiplex and precise genome modifying in mammalian cells.
机译:簇状规则间隔的短回文重复序列(CRISPR)系统最近已发展成为一种强大的基因组编辑技术,因为它仅需要两个关键成分(Cas9蛋白和sgRNA)即可发挥作用,并进一步实现了多重基因组靶向和同源性定向修复(基于HDR)的多种生物的精确基因组编辑。在这里,我们报告通过使用Drosha介导的sgRNA-shRNA结构来指导Cas9进行多重基因组靶向和精确的基因组编辑的新颖有趣的策略。对于多重基因组靶向测定,我们在嘌呤霉素选择的细胞克隆中的3个基因组位点实现了9%以上的同时突变效率。通过将针对DNA连接酶IV基因(LIG4)的shRNA引入sgRNA-shRNA构建体,基于HDR的精确基因组编辑效率提高了2倍以上。我们的工作为哺乳动物细胞中多重和精确的基因组修饰提供了有用的工具。

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