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Improving Editing Efficiency for the Sequences with NGH PAM Using xCas9-Derived Base Editors

机译:使用xCas9衍生的基础编辑器使用NGH PAM提高序列的编辑效率

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摘要

The development of CRISPR/Cas9-mediated base editors (BEs) provided a versatile tool for precise genome editing. The recently developed xCas9-derived base editors (xBEs) that recognize the NG PAM substantially expand the targeting scope in the genome, while their editing efficiency needs to be improved. Here, we described an improved version of xBEs by fusing the BPNLS and Gam to the N terminus of xBEs (BPNLS-Gam-xBE3 and BPNLS-xABE), and this version of base editor displayed higher targeting efficiency for the majority of detected sites. By using this improved version of xBEs, we successfully created and corrected pathogenic mutations at genomic sites with the NGN protospacer-adjacent motif in human cells. Lastly, we used BPNLS-Gam-xBE3 to model pathogenic mutations in discarded human tripronuclear (3PN) zygotes, and no obvious off-targets and indels were detected. Taken together, the data in our study offer an efficient tool for precise genome editing and, thus, an enriched base editing toolkit.
机译:CRISPR / Cas9介导的碱基编辑器(BEs)的开发提供了一种用于精确基因组编辑的多功能工具。识别NG PAM的最近开发的xCas9衍生的基础编辑器(xBE)大大扩展了基因组中的靶向范围,同时还需要提高其编辑效率。在这里,我们通过将BPNLS和Gam融合到xBEs的N末端(BPNLS-Gam-xBE3和BPNLS-xABE)描述了xBEs的改进版本,此版本的基本编辑器对大多数检测到的位点显示出更高的靶向效率。通过使用xBEs的改进版本,我们成功地在人类细胞中创建并纠正了具有NGN原间隔物相邻基序的基因组位点的致病突变。最后,我们使用BPNLS-Gam-xBE3对废弃的人三核(3PN)受精卵中的致病突变进行建模,未检测到明显的脱靶和插入缺失。综上所述,我们研究中的数据为精确的基因组编辑提供了有效的工具,从而提供了丰富的基础编辑工具包。

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