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Selection-dependent and Independent Generation of CRISPR/Cas9-mediated Gene Knockouts in Mammalian Cells

机译:哺乳动物细胞中CRISPR / Cas9介导的基因敲除的选择依赖性和独立生成

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摘要

The CRISPR/Cas9 genome engineering system has revolutionized biology by allowing for precise genome editing with little effort. Guided by a single guide RNA (sgRNA) that confers specificity, the Cas9 protein cleaves both DNA strands at the targeted locus. The DNA break can trigger either non-homologous end joining (NHEJ) or homology directed repair (HDR). NHEJ can introduce small deletions or insertions which lead to frame-shift mutations, while HDR allows for larger and more precise perturbations. Here, we present protocols for generating knockout cell lines by coupling established CRISPR/Cas9 methods with two options for downstream selection/screening. The NHEJ approach uses a single sgRNA cut site and selection-independent screening, where protein production is assessed by dot immunoblot in a high-throughput manner. The HDR approach uses two sgRNA cut sites that span the gene of interest. Together with a provided HDR template, this method can achieve deletion of tens of kb, aided by the inserted selectable resistance marker. The appropriate applications and advantages of each method are discussed.
机译:CRISPR / Cas9基因组工程系统通过轻松进行精确的基因组编辑,彻底改变了生物学。在赋予特异性的单个引导RNA(sgRNA)的引导下,Cas9蛋白在目标基因座处切割了两条DNA链。 DNA断裂可触发非同源末端连接(NHEJ)或同源性定向修复(HDR)。 NHEJ可以引入小的缺失或插入,从而导致移码突变,而HDR允许更大,更精确的扰动。在这里,我们介绍了通过将已建立的CRISPR / Cas9方法与用于下游选择/筛选的两个选项偶联来产生敲除细胞系的方案。 NHEJ方法使用单个sgRNA切割位点和不依赖选择的筛选,其中通过点免疫印迹以高通量方式评估蛋白质的产生。 HDR方法使用跨越目标基因的两个sgRNA切割位点。与提供的HDR模板一起,此方法可以在插入的可选抗性标记的帮助下实现数十kb的缺失。讨论了每种方法的适当应用和优点。

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