内耳
细胞生物学
渗透性休克
音调
渗透浓度
生物物理学
毛细胞
膜片钳
离子通道
化学
生物
生物化学
电生理学
神经科学
基因
受体
作者
Han Du,Chang Ye,Dan Wu,Yang Zang,Linqing Zhang,Chen Chen,Xueyan He,Jing Yang,Ping Hu,Zhengfeng Xu,Guoqiang Wan,Yun Stone Shi
出处
期刊:Cell Reports
[Elsevier]
日期:2020-05-01
卷期号:31 (5): 107596-107596
被引量:27
标识
DOI:10.1016/j.celrep.2020.107596
摘要
Hypotonic stress causes the activation of swelling-activated nonselective cation channels (NSCCs), which leads to Ca2+-dependent regulatory volume decrease (RVD) and adaptive maintenance of the cell volume; however, the molecular identities of the osmosensitive NSCCs remain unclear. Here, we identified TMEM63B as an osmosensitive NSCC activated by hypotonic stress. TMEM63B is enriched in the inner ear sensory hair cells. Genetic deletion of TMEM63B results in necroptosis of outer hair cells (OHCs) and progressive hearing loss. Mechanistically, the TMEM63B channel mediates hypo-osmolarity-induced Ca2+ influx, which activates Ca2+-dependent K+ channels required for the maintenance of OHC morphology. These findings demonstrate that TMEM63B is an osmosensor of the mammalian inner ear and the long-sought cation channel mediating Ca2+-dependent RVD.
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