索引
生物
点突变
RPE65型
遗传学
无义突变
视网膜
DNA
转录激活物样效应核酸酶
突变
碱基对
基因组编辑
分子生物学
基因
清脆的
遗传增强
生物化学
错义突变
基因型
单核苷酸多态性
作者
Susie Suh,Elliot H. Choi,Henri Leinonen,Andrzej T. Foik,Gregory A. Newby,Wei-Hsi Yeh,Zhiqian Dong,Philip D. Kiser,David C. Lyon,David R. Liu,Krzysztof Palczewski
标识
DOI:10.1038/s41551-020-00632-6
摘要
Cytosine base editors and adenine base editors (ABEs) can correct point mutations predictably and independent of Cas9-induced double-stranded DNA breaks (which causes substantial indel formation) and homology-directed repair (which typically leads to low editing efficiency). Here, we show, in adult mice, that a subretinal injection of a lentivirus expressing an ABE and a single-guide RNA targeting a de novo nonsense mutation in the Rpe65 gene corrects the pathogenic mutation with up to 29% efficiency and with minimal formation of indel and off-target mutations, despite the absence of the canonical NGG sequence as a protospacer-adjacent motif. The ABE-treated mice displayed restored RPE65 expression and retinoid isomerase activity, and near-normal levels of retinal and visual functions. Our findings motivate the further testing of ABEs for the treatment of inherited retinal diseases and for the correction of pathological mutations with non-canonical protospacer-adjacent motifs. Subretinal viral delivery, in mice, of an adenine base editor and a single-guide RNA targeting a nonsense mutation in the Rpe65 gene restores near-normal levels of retinal and visual functions.
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