无义突变
胡说
生物
遗传学
突变
基因组编辑
终止密码子
耳蜗
核糖核酸
同源重组
基因
内耳
计算生物学
无意义介导的衰变
听力损失
碱基对
作者
Hanxiao Sun,Teng Qi,Wenqing Liu,Rui Guo,Meng-Hua Li,Wei Xiong,Qiang Huang,Qianru Yu,Nan Luo,Yang Li,Jinghui Song,Shusheng Gong,Xi Shi,Chengqi Yi,Ke Liu
标识
DOI:10.1038/s41467-025-67112-w
摘要
The gene therapy achieved by AAV-mediated otoferlin-overexpression is an effective therapeutic strategy for congenital deafness. However, achieving its physiological and endogenous patterns of expression remains challenging. Here, we generate the homologous mutation Otof c.1315 C > T (p.R439*), equivalent to OTOF c.1273 C > T (p.R425*) found in humans with profound deafness, to create a nonsense mutation-induced deaf mouse model. We then deliver the 'RESTART v3' system, which is a CRISPR-free RNA base editor for nonsense mutation suppression, into the cochlea of the mice. We achieve physiological otoferlin expression, and the edited premature termination codon is reverse-mutated to the original amino acid. We observe significant hearing restoration and enhancement of the behavioral auditory startle reflex. Thus, our study presents a successful RNA editing strategy to significantly restore hereditary deafness in mice carrying the specific Otof nonsense mutation, which holds great promise for future clinical translation.
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