Wang Shengnan, Xi Yuehui, Fang Qiaojun, Shi Sai, Wang Fei, Xian Fuyu, Zhang Zhongyang, Yang Yuxin, Jin Xishuo, Wang Xiaomin, Cao Chen, Zhang Hailin, Gamper Nikita, Xu Zhigang, Shen Haitao, Lv Ping
Department of Pharmacology, The Key Laboratory of Neural and Vascular Biology, Ministry of Education, The Key Laboratory of New Drug Pharmacology and Toxicology, The Hebei Collaboration Innovation Center for Mechanism, Diagnosis and Treatment of Neurological and Psychiatric Disease, Hebei Medical University, Shijiazhuang, Hebei, 050017, China.
Shandong Provincial Key Laboratory of Animal Cells and Developmental Biology and Key Laboratory for Experimental Teratology of the Ministry of Education, School of Life Sciences, Shandong University, Qingdao, Shandong, 266237, China.
Adv Sci (Weinh). 2025 Jul 11:e10477. doi: 10.1002/advs.202410477.
Damage to the cochlear outer hair cell (OHC) is a major cause of deafness in mammals. OHCs amplify the auditory signals to enhance the sensitivity and sound frequency selectivity of the auditory system. However, detailed mechanisms underlying functional OHC regulation remain unclear. Here, it is demonstrated that volume-regulated anion channels (VRACs) are essential for OHC function. VRAC subunits are highly expressed in OHCs. Genetic deletion of leucin-rich repeat containing 8A (LRRC8A), the obligatory VRAC subunit, in hair cells results in hearing loss, whereas re-expressing LRRC8A in the cochlea restores hearing in LRRC8A-deficient mice. By employing patch-clamp electrophysiology, it is shown that VRAC in OHCs is activated by hypotonicity and is involved in regulating cell volume. Furthermore, the nonlinear capacitance (NLC), a measure of electromotility, is decreased in the OHCs from LRRC8A-deficient mice. Therefore, LRRC8A deficiency compromises electromotility of OHCs and impairs signal amplification. In conclusion, the findings highlight the essential role of VRAC in OHC electromotility and its necessity for auditory function.
耳蜗外毛细胞(OHC)损伤是哺乳动物耳聋的主要原因。OHC放大听觉信号以增强听觉系统的灵敏度和声音频率选择性。然而,OHC功能调节的详细机制仍不清楚。在此,研究表明容积调节性阴离子通道(VRACs)对OHC功能至关重要。VRAC亚基在OHC中高度表达。毛细胞中富含亮氨酸重复序列8A(LRRC8A)(VRAC的必需亚基)的基因缺失导致听力损失,而在耳蜗中重新表达LRRC8A可恢复LRRC8A缺陷小鼠的听力。通过采用膜片钳电生理学方法,研究表明OHC中的VRAC由低渗激活并参与调节细胞容积。此外,在LRRC8A缺陷小鼠的OHC中,作为电运动性指标的非线性电容(NLC)降低。因此,LRRC8A缺陷会损害OHC的电运动性并削弱信号放大。总之,这些发现突出了VRAC在OHC电运动性中的重要作用及其对听觉功能的必要性。