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Engineering of high-precision base editors for site-specific single nucleotide replacement

机译:用于特定位点单核苷酸替换的高精度碱基编辑器工程

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摘要

RNA-guided nucleases of the CRISPR/Cas type can be repurposed as programmable nucleotide deaminases to mediate targeted nucleotide substitutions. Such base editors have enormous potential in genome editing, gene therapy and precision breeding. However, current editors suffer from limited specificity in that they edit different and/or multiple bases within a larger sequence window. Using cytidine deaminase base editors that elicit C-to-T mutations, we show here that high editing precision can be achieved by engineering the connection between the deaminase domain and the Cas domain of the editor. By systematically testing different linker sequences and removing non-essential sequences from the deaminase, we obtain high-precision base editors with narrow activity windows that can selectively edit a single cytidine at a specific position with high accuracy and efficiency. These base editors will enable the use of genome editing in applications where single-nucleotide changes are required and off-target editing of adjacent nucleotides is not tolerable.
机译:可以将CRISPR / Cas类型的RNA引导的核酸酶重新用作可编程的核苷酸脱氨酶,以介导靶向的核苷酸取代。这样的基础编辑者在基因组编辑,基因治疗和精确育种方面具有巨大潜力。然而,当前的编辑者由于其在较大的序列窗口内编辑不同和/或多个碱基而遭受了局限性。使用引起C-T突变的胞苷脱氨酶碱基编辑器,我们在此表明​​,通过设计脱氨酶域和Cas的编辑域之间的连接可以实现较高的编辑精度。通过系统地测试不同的接头序列并从脱氨酶中去除不必要的序列,我们获得了具有狭窄活性窗口的高精度碱基编辑器,该编辑器可以选择性地在特定位置高效,高效地编辑单个胞苷。这些碱基编辑器将允许在需要单核苷酸变化且不能容许相邻核苷酸脱靶编辑的应用中使用基因组编辑。

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