Cambridge Institute for Medical Research, University of Cambridge, Cambridge, UK.
Traffic. 2019 Dec;20(12):974-982. doi: 10.1111/tra.12696. Epub 2019 Oct 17.
CHoP-In (CRISPR/Cas9-mediated Homology-independent PCR-product integration) is a fast, non-homologous end-joining based, strategy for genomic editing in mammalian cells. There is no requirement for cloning in generation of the integration donor, instead the desired integration donor is produced as a polymerase chain reaction (PCR) product, flanked by the Cas9 recognition sequences of the target locus. When co-transfected with the cognate Cas9 and guide RNA, double strand breaks are introduced at the target genomic locus and at both ends of the PCR product. This allows incorporation into the genomic locus via hon-homologous end joining. The approach is versatile, allowing N-terminal, C-terminal or internal tag integration and gives predictable genomic integrations, as demonstrated for a selection of well characterised membrane trafficking proteins. The lack of donor vectors offers advantages over existing methods in terms of both speed and hands-on time. As such this approach will be a useful addition to the genome editing toolkit of those working in mammalian cell systems.
CHoP-In(CRISPR/Cas9 介导的同源非依赖性 PCR 产物整合)是一种在哺乳动物细胞中进行基因组编辑的快速、非同源末端连接的策略。在生成整合供体时不需要克隆,而是将所需的整合供体作为聚合酶链反应(PCR)产物产生,两端都带有靶基因座的 Cas9 识别序列。当与同源 Cas9 和指导 RNA 共转染时,在靶基因座和 PCR 产物的两端都会产生双链断裂。这允许通过非同源末端连接将其整合到基因组基因座中。该方法具有通用性,允许 N 端、C 端或内部标记的整合,并能给出可预测的基因组整合,这在一系列经过充分表征的膜转运蛋白中得到了验证。与现有的方法相比,这种方法不使用供体载体,在速度和操作时间方面都具有优势。因此,对于在哺乳动物细胞系统中工作的人来说,这种方法将是基因组编辑工具包的一个有用补充。