基因组编辑
基因组
生物
计算生物学
素数(序理论)
转录激活物样效应核酸酶
DNA
体细胞
遗传学
基因
数学
组合数学
作者
Pengpeng Liu,Shun‐Qing Liang,Chunwei Zheng,Esther Mintzer,Yan Zhao,Karthikeyan Ponnienselvan,Aamir Mir,Erik J. Sontheimer,Guangping Gao,Terence R. Flotte,Scot A. Wolfe,Wen Xue
标识
DOI:10.1038/s41467-021-22295-w
摘要
Abstract Prime editors (PEs) mediate genome modification without utilizing double-stranded DNA breaks or exogenous donor DNA as a template. PEs facilitate nucleotide substitutions or local insertions or deletions within the genome based on the template sequence encoded within the prime editing guide RNA (pegRNA). However, the efficacy of prime editing in adult mice has not been established. Here we report an NLS-optimized SpCas9-based prime editor that improves genome editing efficiency in both fluorescent reporter cells and at endogenous loci in cultured cell lines. Using this genome modification system, we could also seed tumor formation through somatic cell editing in the adult mouse. Finally, we successfully utilize dual adeno-associated virus (AAVs) for the delivery of a split-intein prime editor and demonstrate that this system enables the correction of a pathogenic mutation in the mouse liver. Our findings further establish the broad potential of this genome editing technology for the directed installation of sequence modifications in vivo, with important implications for disease modeling and correction.
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