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瞬时受体电位 melastatin 1:毛细胞转导通道候选物。

Transient receptor potential melastatin 1: a hair cell transduction channel candidate.

机构信息

Otolaryngology Head and Neck Surgery, University Hospitals Case Medical Center, Case Western Reserve University, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2013 Oct 11;8(10):e77213. doi: 10.1371/journal.pone.0077213. eCollection 2013.

Abstract

Sound and head movements are perceived through sensory hair cells in the inner ear. Mounting evidence indicates that this process is initiated by the opening of mechanically sensitive calcium-permeable channels, also referred to as the mechanoelectrical transducer (MET) channels, reported to be around the tips of all but the tallest stereocilia. However, the identity of MET channel remains elusive. Literature suggests that the MET channel is a non-selective cation channel with a high Ca(2+) permeability and ~100 picosiemens conductance. These characteristics make members of the transient receptor potential (TRP) superfamily likely candidates for this role. One of these candidates is the transient receptor potential melastatin 1 protein (TRPM1), which is expressed in various cells types within the cochlea of the mouse including the hair cells. Recent studies demonstrate that mutations in the TRPM1 gene underlie the inherited retinal disease complete congenital stationary night blindness in humans and depolarizing bipolar cell dysfunction in the mouse retina, but auditory function was not assessed. Here we investigate the role of Trpm1 in hearing and as a possible hair cell MET channel using mice homozygous for the null allele of Trpm1 (Trpm1(-/-)) or a missense mutation in the pore domain of TRPM1 (Trpm1(tvrm27/tvrm27)). Hearing thresholds were evaluated in adult (4-5 months old) mice with auditory-evoked brain stem responses. Our data shows no statistically significant difference in hearing thresholds in Trpm1(-/-) or Trpm1(tvrm27/tvrm27) mutants compared to littermate controls. Further, none of the mutant mice showed any sign of balance disorder, such as head bobbing or circling. These data suggest that TRPM1 is not essential for development of hearing or balance and it is unlikely that TRPM1 is a component of the hair cell MET channel.

摘要

声音和头部运动通过内耳中的感觉毛细胞感知。越来越多的证据表明,这个过程是由机械敏感的钙通透性通道(也称为机械电换能器 (MET) 通道)的开启引发的,这些通道据报道存在于除最高的静纤毛之外的所有静纤毛的尖端。然而,MET 通道的身份仍然难以捉摸。文献表明,MET 通道是一种非选择性阳离子通道,具有高钙通透性和~100 皮西门子的电导。这些特性使得瞬时受体电位 (TRP) 超家族的成员很可能是这个角色的候选者。其中一个候选者是瞬时受体电位 melastatin 1 蛋白 (TRPM1),它在小鼠耳蜗中的各种细胞类型中表达,包括毛细胞。最近的研究表明,TRPM1 基因的突变是人类遗传性视网膜疾病完全先天性静止性夜盲症和小鼠视网膜去极化双极细胞功能障碍的基础,但听觉功能未进行评估。在这里,我们使用 Trpm1 基因纯合缺失 (Trpm1(-/-)) 或 TRPM1 孔域错义突变 (Trpm1(tvrm27/tvrm27)) 的小鼠来研究 Trpm1 在听力中的作用和作为毛细胞 MET 通道的可能性。使用听觉诱发脑干反应评估成年(4-5 个月大)小鼠的听力阈值。我们的数据显示,与同窝对照相比,Trpm1(-/-) 或 Trpm1(tvrm27/tvrm27) 突变体的听力阈值没有统计学上的显著差异。此外,没有一只突变小鼠表现出任何平衡障碍的迹象,例如头部摆动或转圈。这些数据表明,TRPM1 对于听力或平衡的发育不是必需的,并且 TRPM1 不太可能是毛细胞 MET 通道的组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4929/3795643/b44f62db64bb/pone.0077213.g001.jpg

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