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PMCA2 pump mutations and hereditary deafness

机译:PMCA2泵突变和遗传性耳聋

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摘要

Hair cells of the inner ear detect sound stimuli, inertial or gravitational forces by deflection of their apical stereocilia. A small number of stereociliary cation-selective mechanotransduction (MET) channels admit K+ and Ca2+ ions into the cytoplasm promoting hair cell membrane depolarization and, consequently, neurotransmitter release at the cell basolateral pole. Ca2+ influx into the stereocilia compartment is counteracted by the unusual w/a splicing variant of plasma-membrane calcium-pump isoform 2 (PMCA2) which, unlike other PMCA2 variants, increases only marginally its activity in response to a rapid variation of the cytoplasmic free Ca2+ concentration ([Ca2+)(c)). Missense mutations of PMCA2w/a cause deafness and loss of balance in humans. Mouse models in which the pump is genetically ablated or mutated show hearing and balance impairment, which correlates with defects in homeostatic regulation of stereociliary [Ca2+](c), decreased sensitivity of mechanotransduction channels to hair bundle displacement and progressive degeneration of the organ of Corti. These results highlight a critical role played by the PMCA2w/a pump in the control of hair cell function and survival, and provide mechanistic insight into the etiology of deafness and vestibular disorders.
机译:内耳的毛细胞通过偏离其顶端立体纤胺检测声刺激,惯性或重力。少量的立体阳离子选择性机械调节(MET)通道将K +和Ca2 +离子进入促进毛细胞膜去极化的细胞质,并且因此,在细胞基底板杆处的神经递质释放。通过血浆 - 膜钙 - 泵同种型2(PMCA2)的异常W / A拼接变体抵消了CA2 +进入立体核池隔室,这与其他PMCA2变体不同,响应于细胞质自由的快速变化而仅增加其活性略微增加Ca2 +浓度([Ca2 +)(c))。 PMCA2W / A引起耳聋和人类平衡损失的畸形突变。其中泵是基因烧蚀或突变的表演听力和平衡损伤的小鼠模型,其与稳态调节缺陷的立体镀层[ca2 +](c)相关,降低了机电站的敏感性通道对头发束的敏感性和皮质器官的进一步变性。这些结果突出了PMCA2W / A泵在毛细胞功能和生存控制中发挥的关键作用,并为耳聋和前庭疾病的病因提供机械洞察。

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