4.6 Article

Hearing consequences in Gjb2 knock-in mice: implications for human p.V37I mutation

期刊

AGING-US
卷 11, 期 18, 页码 7416-7441

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/aging.102246

关键词

GJB2; age-related hearing loss; potassium recycling; environmental stress; hair cells

资金

  1. National Natural Science Foundation of China (NSFC) [81730028, 81770995]
  2. Shanghai Key Laboratory of Translational Medicine on Ear and Nose diseases [14DZ2260300]

向作者/读者索取更多资源

Human p.V37I mutation of GJB2 gene was strongly correlated with late-onset progressive hearing loss, especially among East Asia populations. We generated a knock-in mouse model based on human p.V37I variant (c. 109G>A) that recapitulated the human phenotype. Cochlear pathology revealed no significant hair cell loss, stria vascularis atrophy or spiral ganglion neuron loss, but a significant change in the length of gap junction plaques, which may have contributed to the observed mild endocochlear potential (EP) drop in homozygous mice lasting lifetime. The cochlear amplification in homozygous mice was compromised, but outer hair cells' function remained unchanged, indicating that the reduced amplification was EP-rather than prestin-generated. In addition to ABR threshold elevation, ABR wave I latencies were also prolonged in aged homozygous animals. We found in homozygous IHCs a significant increase in I-Ca but no change in Ca2+ efficiency in triggering exocytosis. Environmental insults such as noise exposure, middle ear injection of KCl solution and systemic application of furosemide all exacerbated the pathological phenotype in homozygous mice. We conclude that this Gjb2 mutation-induced hearing loss results from 1) reduced cochlear amplifier caused by lowered EP, 2) IHCs excitotoxicity associated with potassium accumulation around hair cells, and 3) progression induced by environmental insults.

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