听力损失
听觉亢进
突变
听力学
杂合子优势
耳蜗内电位
耳蜗
噪声性听力损失
医学
遗传学
生物
基因
等位基因
噪声暴露
作者
Li-Man Liu,Chun Liang,Jin Chen,Shu Fang,Hong-Bo Zhao
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2023-02-08
卷期号:9 (6)
被引量:9
标识
DOI:10.1126/sciadv.adf4144
摘要
Gap junction gene GJB2 (Cx26) mutations cause >50% of nonsyndromic hearing loss. Its recessive hetero-mutation carriers, who have no deafness, occupy ~10 to 20% of the general population. Here, we report an unexpected finding that these heterozygote carriers have hearing oversensitivity, and active cochlear amplification increased. Mouse models show that Cx26 hetero-deletion reduced endocochlear potential generation in the cochlear lateral wall and caused outer hair cell electromotor protein prestin compensatively up-regulated to increase active cochlear amplification and hearing sensitivity. The increase of active cochlear amplification also increased sensitivity to noise; exposure to daily-level noise could cause Cx26+/- mice permanent hearing threshold shift, leading to hearing loss. This study demonstrates that Cx26 recessive heterozygous mutations are not "harmless" for hearing as previously considered and can cause hyperacusis-like hearing oversensitivity. The data also indicate that GJB2 hetero-mutation carriers are vulnerable to noise and should avoid noise exposure in daily life.
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