首页> 美国卫生研究院文献>The Journal of Physiology >TRPML3 mutations cause impaired mechano-electrical transduction and depolarization by an inward-rectifier cation current in auditory hair cells of varitint-waddler mice
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TRPML3 mutations cause impaired mechano-electrical transduction and depolarization by an inward-rectifier cation current in auditory hair cells of varitint-waddler mice

机译:TRPML3突变导致内伏整流子小鼠听觉毛细胞中的内向整流器阳离子电流破坏了机电转导和去极化

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摘要

TRPML3 (mucolipin-3) belongs to one of the transient-receptor-potential (TRP) ion channel families. Mutations in the Trpml3 gene cause disorganization of the stereociliary hair bundle, structural aberrations in outer and inner hair cells and stria vascularis defects, leading to deafness in the varitint-waddler (Va) mouse. Here we refined the stereociliary localization of TRPML3 and investigated cochlear hair cell function in varitint-waddler (VaJ) mice carrying the TRPML3<I362T/A419P> mutations. Using a TRPML3-specific antibody we detected a ∼68 kDa protein with near-equal expression levels in cochlea and vestibule of wild-type and VaJ mutants. At postnatal days 3 and 5, we observed abundant localization of TRPML3 at the base of stereocilia near the position of the ankle links. This stereociliary localization domain was absent in VaJ heterozygotes and homozygotes. Electrophysiological recordings revealed reduced mechano-electrical transducer currents in hair cells from VaJ/+ and VaJ/VaJ mice. Furthermore, FM1-43 uptake and [3H]gentamicin accumulation were decreased in hair cells in cultured organs of Corti from VaJ/+ and VaJ/VaJ mice. We propose that TRPML3 plays a critical role at the ankle-link region during hair-bundle growth and that an adverse effect of mutant TRPML3 on bundle development and mechano-electrical transduction is the main cause of hearing loss in VaJ/+ mutant mice. Outer hair cells of VaJ/VaJ mice additionally had depolarized resting potentials due to an inwardly rectifying leak conductance formed by the mutant channels, leading over time to hair-cell degeneration and contributing to their deafness. Our findings argue against TRPML3 being a component of the hair-cell transducer channel.
机译:TRPML3(粘蛋白-3)属于瞬态受体电位(TRP)离子通道家族之一。 Trpml3基因的突变会导致立体睫毛束的混乱,外部和内部毛细胞的结构异常以及血管纹的缺陷,从而导致varitint-waddler(Va)小鼠耳聋。在这里,我们完善了TRPML3的立体纤毛定位,并研究了携带TRPML3 突变的varitint-waddler(Va J )小鼠的耳蜗毛细胞功能。使用TRPML3特异性抗体,我们在野生型和Va J 突变体的耳蜗和前庭中检测到约68 kDa的蛋白质,其表达水平几乎相等。在产后第3天和第5天,我们观察到TRPML3在足突附近的立体纤毛基部大量定位。 Va J 杂合子和纯合子中不存在这种立体纤毛定位域。电生理记录显示,Va J / +和Va J / Va J 小鼠的毛细胞中的机电转换电流降低。此外,来自Va J / +和Va J 的Corti培养器官的毛细胞中FM1-43的摄取和[ 3 H]庆大霉素的积累减少。 sup> / Va J 小鼠。我们认为,TRPML3在毛束生长过程中的踝关节区域起着关键作用,突变的TRPML3对束发和机电转导的不利影响是Va J听力损失的主要原因。 / +突变小鼠。 Va J / Va J 小鼠的外毛细胞还具有去极化的静息电位,这是由于突变通道形成的向内整流泄漏电导,随着时间的流逝导致毛细胞变性并助长了他们的耳聋我们的发现反对TRPML3是毛细胞传感器通道的组成部分。

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