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质膜钙泵2(PMCA2)基因突变与遗传性耳聋

PMCA2 pump mutations and hereditary deafness.

作者信息

Bortolozzi Mario, Mammano Fabio

机构信息

University of Padua, Department of Physics and Astronomy "G. Galilei", Padua, Italy; Venetian Institute of Molecular Medicine (VIMM), Padua, Italy; CNR Institute of Protein Biochemistry, Naples, Italy.

University of Padua, Department of Physics and Astronomy "G. Galilei", Padua, Italy; Venetian Institute of Molecular Medicine (VIMM), Padua, Italy; CNR Institute of Cell Biology and Neurobiology, Monterotondo Scalo, Rome, Italy.

出版信息

Neurosci Lett. 2018 Jan 10;663:18-24. doi: 10.1016/j.neulet.2017.09.059.

Abstract

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 Ca ions into the cytoplasm promoting hair cell membrane depolarization and, consequently, neurotransmitter release at the cell basolateral pole. Ca 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 Ca concentration ([Ca]). 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 [Ca], 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.

摘要

内耳的毛细胞通过其顶端静纤毛的偏转来检测声音刺激、惯性力或重力。少数静纤毛阳离子选择性机械转导(MET)通道允许钾离子和钙离子进入细胞质,促进毛细胞膜去极化,进而导致神经递质在细胞基底外侧极释放。钙离子流入静纤毛区室的过程会被质膜钙泵同工型2(PMCA2)的异常w/a剪接变体所抵消,与其他PMCA2变体不同的是,该变体仅在细胞质游离钙浓度([Ca])快速变化时略微增加其活性。PMCA2w/a的错义突变会导致人类耳聋和平衡失调。在基因上敲除或突变该泵的小鼠模型表现出听力和平衡障碍,这与静纤毛[Ca]稳态调节缺陷、机械转导通道对毛束位移的敏感性降低以及柯蒂氏器的进行性退化相关。这些结果突出了PMCA2w/a泵在控制毛细胞功能和存活中所起的关键作用,并为耳聋和前庭疾病的病因提供了机制性见解。

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