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首页> 外文期刊>Nature Communications >In trans paired nicking triggers seamless genome editing without double-stranded DNA cutting
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In trans paired nicking triggers seamless genome editing without double-stranded DNA cutting

机译:反式切割可实现无缝的基因组编辑,而无需双链DNA切割

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摘要

Precise genome editing involves homologous recombination between donor DNA and chromosomal sequences subjected to double-stranded DNA breaks made by programmable nucleases. Ideally, genome editing should be efficient, specific, and accurate. However, besides constituting potential translocation-initiating lesions, double-stranded DNA breaks (targeted or otherwise) are mostly repaired through unpredictable and mutagenic non-homologous recombination processes. Here, we report that the coordinated formation of paired single-stranded DNA breaks, or nicks, at donor plasmids and chromosomal target sites by RNA-guided nucleases based on CRISPR-Cas9 components, triggers seamless homology-directed gene targeting of large genetic payloads in human cells, including pluripotent stem cells. Importantly, in addition to significantly reducing the mutagenicity of the genome modification procedure, this in trans paired nicking strategy achieves multiplexed, single-step, gene targeting, and yields higher frequencies of accurately edited cells when compared to the standard double-stranded DNA break-dependent approach.
机译:精确的基因组编辑涉及供体DNA和染色体序列之间的同源重组,这些序列会经历由可编程核酸酶产生的双链DNA断裂。理想情况下,基因组编辑应高效,专一且准确。但是,除了构成潜在的易位损伤外,双链DNA断裂(靶向或其他)大多通过不可预测且诱变的非同源重组过程修复。在这里,我们报道基于CRISPR-Cas9成分的RNA引导的核酸酶在供体质粒和染色体靶位点上成对形成的单链DNA断裂或缺口的协调形成,触发了以同源性为导向的无缝基因靶向大基因有效负载人细胞,包括多能干细胞。重要的是,除了显着降低基因组修饰程序的致突变性外,与标准的双链DNA断裂相比,这种成对的切口策略还可以实现多步,单步,基因靶向,并产生更高频率的精确编辑的细胞。依赖的方法。

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