首页> 美国卫生研究院文献>The CRISPR Journal >CRISPR-Directed In Vitro Gene Editing of Plasmid DNA Catalyzed by Cpf1 (Cas12a) Nuclease and a Mammalian Cell-Free Extract
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CRISPR-Directed In Vitro Gene Editing of Plasmid DNA Catalyzed by Cpf1 (Cas12a) Nuclease and a Mammalian Cell-Free Extract

机译:Cpf1(Cas12a)核酸酶和哺乳动物无细胞提取物催化的质粒DNA的CRISPR-CRISPR体外基因编辑

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摘要

Extraordinary efforts are underway to offer greater versatility and broader applications for CRISPR-directed gene editing. Here, we report the establishment of a system for studying this process in a mammalian cell-free extract prepared from HEK-293 human embryonic kidney cells. A ribonucleoprotein (RNP) particle and a mammalian cell-free extract coupled with a genetic readout are used to generate and identify specific deletions or insertions within a plasmid target. A Cpf1 (Cas12a) RNP induces a double-stranded break, and the cell-free extract provides the appropriate enzymatic activities to direct specific deletion through resection and homology directed repair in the presence of single- and double-stranded donor DNA. This cell-free system establishes a foundation to study the heterogeneous products of gene editing, as well as the relationship between nonhomologous end joining and homology directed repair and related regulatory circuitries simultaneously in a controlled environment.
机译:正在做出非凡的努力来为CRISPR指导的基因编辑提供更大的多功能性和更广泛的应用。在这里,我们报告建立了从HEK-293人胚肾细胞制备的哺乳动物无细胞提取物中研究此过程的系统的建立。核糖核蛋白(RNP)颗粒和哺乳动物无细胞提取物再加上遗传读数,可用于生成和鉴定质粒靶标内的特定缺失或插入。 Cpf1(Cas12a)RNP诱导双链断裂,无细胞提取物提供适当的酶促活性,以指导在存在单链和双链供体DNA的情况下通过切除和同源性定向修复指导特异性缺失。这种无细胞系统为在受控环境中同时研究基因编辑的异质产物,以及非同源末端连接和同源性定向修复以及相关调控电路之间的关系奠定了基础。

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