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一种用于长期恢复隐性重度耳聋小鼠听觉功能的碱基编辑器。

A base editor for the long-term restoration of auditory function in mice with recessive profound deafness.

作者信息

Cui Chong, Wang Shengyi, Wang Daqi, Zhao Jingjing, Huang Bowei, Zhu Biyun, Chen Yuxin, Tang Honghai, Han Yu, Ye Cheng, Mu Dan, Zhang Chengdong, Yang Yuan, Bao Yihan, Lv Jun, Han Shuang, Li Geng-Lin, Li Huawei, Shu Yilai

机构信息

ENT Institute and Department of Otorhinolaryngology, Eye and ENT Hospital, Fudan University, Shanghai, China.

Institutes of Biomedical Science, Fudan University, Shanghai, China.

出版信息

Nat Biomed Eng. 2025 Jan;9(1):40-56. doi: 10.1038/s41551-024-01235-1. Epub 2024 Aug 12.

Abstract

A prevalent recessive mutation (c.2485C>T, p.Q829X) within the OTOF gene leads to profound prelingual hearing loss. Here we show that in Otof mice harbouring a mutation (c.2482C>T, p.Q828X) homozygous to human OTOF that faithfully mimics the hearing-loss phenotype, a base editor (consisting of the deaminase ABE7.10max and the Cas9 variant SpCas9-NG) packaged in adeno-associated viruses and injected into the inner ear of the mice via the round-window membrane effectively corrected the pathogenic mutation, with no apparent off-target effects. The treatment restored the levels of the otoferlin protein in 88% of the inner hair cells and stably rescued the auditory function of the mice to near-wild-type levels for over 1.5 years while improving synaptic exocytosis in the inner hair cells. We also show that an adenine base editor that targets the prevalent human OTOF mutation restored hearing in humanized mice to levels comparable to those of the wild-type counterparts. Base editors may be effective for the treatment of hereditary deafness.

摘要

OTOF基因内一种常见的隐性突变(c.2485C>T,p.Q829X)会导致严重的语前听力丧失。在此,我们表明,在携带与人类OTOF基因纯合的突变(c.2482C>T,p.Q828X)且忠实地模拟听力损失表型的Otof小鼠中,包装在腺相关病毒中并通过圆窗膜注射到小鼠内耳的碱基编辑器(由脱氨酶ABE7.10max和Cas9变体SpCas9-NG组成)有效地纠正了致病突变,且无明显的脱靶效应。该治疗使88%的内毛细胞中的otoferlin蛋白水平恢复,并在超过1.5年的时间里将小鼠的听觉功能稳定地挽救至接近野生型水平,同时改善了内毛细胞中的突触胞吐作用。我们还表明,靶向常见人类OTOF突变的腺嘌呤碱基编辑器可将人源化小鼠的听力恢复到与野生型对照相当的水平。碱基编辑器可能对遗传性耳聋的治疗有效。

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