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Efficient chromosomal gene modification with CRISPR/cas9 and PCR-based homologous recombination donors in cultured Drosophila cells

机译:利用CRISPR / cas9和基于PCR的同源重组供体在果蝇细胞中进行高效的染色体基因修饰

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摘要

The ability to edit the genome is essential for many state-of-the-art experimental paradigms. Since DNA breaks stimulate repair, they can be exploited to target site-specific integration. The clustered, regularly interspaced, short palindromic repeats (CRISPR)/cas9 system from Streptococcus pyogenes has been harnessed into an efficient and programmable nuclease for eukaryotic cells. We thus combined DNA cleavage by cas9, the generation of homologous recombination donors by polymerase chain reaction (PCR) and transient depletion of the non-homologous end joining factor lig4. Using cultured Drosophila melanogaster S2-cells and the phosphoglycerate kinase gene as a model, we reached targeted integration frequencies of up to 50% in drug-selected cell populations. Homology arms as short as 29 nt appended to the PCR primer resulted in detectable integration, slightly longer extensions are beneficial. We confirmed established rules for S. pyogenes cas9 sgRNA design and demonstrate that the complementarity region allows length variation and 5′-extensions. This enables generation of U6-promoter fusion templates by overlap-extension PCR with a standardized protocol. We present a series of PCR template vectors for C-terminal protein tagging and clonal Drosophila S2 cell lines with stable expression of a myc-tagged cas9 protein. The system can be used for epitope tagging or reporter gene knock-ins in an experimental setup that can in principle be fully automated.
机译:编辑基因组的能力对于许多最新的实验范例至关重要。由于DNA断裂刺激修复,因此可以利用它们来靶向位点特异性整合。化脓性链球菌的簇状,规则间隔,短回文重复序列(CRISPR)/ cas9系统已被用于真核细胞的高效可编程核酸酶中。因此,我们结合了通过cas9进行的DNA切割,通过聚合酶链反应(PCR)产生的同源重组供体和非同源末端连接因子lig4的瞬时消耗。使用培养的果蝇S2细胞和磷酸甘油酸激酶基因作为模型,我们在药物选择的细胞群体中达到了高达50%的目标整合频率。与PCR引物连接的短至29 nt的同源性臂导致可检测到的整合,稍长的延伸是有益的。我们证实了化脓性链球菌cas9 sgRNA设计的既定规则,并证明互补区域允许长度变化和5'-延伸。这使得能够通过具有标准化方案的重叠延伸PCR来生成U6-启动子融合模板。我们提出了一系列PCR模板载体,用于C末端蛋白标记和果蝇S2细胞系,并带有myc标记的cas9蛋白的稳定表达。该系统可用于实验设置中的表位标记或报告基因敲入,该实验设置原则上可以完全自动化。

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