首页> 外文期刊>The Journal of Physiology >Localisation of the mechanotransducer channels in mammalian cochlear hair cells provides clues to their gating.
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Localisation of the mechanotransducer channels in mammalian cochlear hair cells provides clues to their gating.

机译:机械转导通道在哺乳动物耳蜗毛细胞中的定位为它们的门控提供了线索。

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Our sense of hearing and balance relies on the very rapid gating of mechanotransducer channels known to be located close to the tops of the hair cell stereocilia within the stereociliary bundle. The molecular identity of the channels is unknown but functional aspects such as permeation, block and sensitivity to bundle displacement are well known. The channel has high calcium permeability and this feature has been used in conjunction with fast confocal calcium imaging to unambiguously localise the channels at the top of the two shorter rows of stereocilia in mammalian cochlear hair cells. The data suggest that they are completely absent from the tallest row. It is thought that the structures connecting stereocilia in adjacent rows, the tip links, are either directly responsible for the channel's mechanical gating, or are closely associated with the gating process. The channels must therefore be associated with the bottom part of the tip links and not the top. This feature has important implications for both the channel's gating mechanism and its regulatory adaptation mechanism. The tip link remains an attractive candidate for mechanical coupling between the bundle and the channel or an accessory protein. The localisation of the mechanotransducer channels to the lower end of the tip link represents an important milestone in the journey towards eventual identification of the channel and its gating mechanism.
机译:我们的听觉和平衡感依赖于机械换能器通道的快速门控,该通道被认为位于立体纤毛束内的毛细胞立体纤毛顶部附近。通道的分子身份是未知的,但是功能方面如渗透,阻塞和对束位移的敏感性是众所周知的。该通道具有较高的钙渗透性,并且该功能已与快速共聚焦钙成像结合使用,以明确地将通道定位在哺乳动物耳蜗毛细胞中两个较短的立体纤毛行的顶部。数据表明,最高的行完全没有它们。据认为,在相邻行中连接立体毛的结构,即尖端连接,或者直接负责通道的机械选通,或者与选通过程密切相关。因此,通道必须与顶部链节的底部而不是顶部相关联。此功能对通道的门控机制及其监管适应机制均具有重要意义。尖端连接仍然是束与通道或辅助蛋白之间机械偶联的有吸引力的候选物。机械换能器通道定位到尖端连杆的下端代表了最终确定通道及其门控机制的过程中的重要里程碑。

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