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Mechanotransduction current is essential for stability of the transducing stereocilia in mammalian auditory hair cells

机译:机械转导电流对于哺乳动物听毛细胞中转导的立体纤毛的稳定性至关重要

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摘要

Mechanotransducer channels at the tips of sensory stereocilia of inner ear hair cells are gated by the tension of 'tip links' interconnecting stereocilia. To ensure maximal sensitivity, tip links are tensioned at rest, resulting in a continuous influx of Ca2+ into the cell. Here, we show that this constitutive Ca2+ influx, usually considered as potentially deleterious for hair cells, is in fact essential for stereocilia stability. In the auditory hair cells of young postnatal mice and rats, a reduction in mechanotransducer current, via pharmacological channel blockers or disruption of tip links, leads to stereocilia shape changes and shortening. These effects occur only in stereocilia that harbor mechanotransducer channels, recover upon blocker washout or tip link regeneration and can be replicated by manipulations of extracellular Ca2+ or intracellular Ca2+ buffering. Thus, our data provide the first experimental evidence for the dynamic control of stereocilia morphology by the mechanotransduction current.>DOI:
机译:内耳毛细胞的感觉性立体纤毛末端的机械换能器通道是由相互连接的立体纤毛的“尖端链接”的张力控制的。为了确保最大的敏感性,静止时会张紧顶端的链节,导致Ca 2 + 不断流入细胞。在这里,我们表明这种通常为毛细胞潜在有害的组成型Ca 2 + 涌入实际上对纤毛稳定性至关重要。在年轻的产后小鼠和大鼠的听觉毛细胞中,通过药理通道阻滞剂或尖端连接的破坏,机械换能器电流的减少导致纤毛形状改变和缩短。这些效应仅在具有机械换能器通道的立体纤毛中发生,在阻断剂清除或末端链接再生后恢复,并且可以通过操纵细胞外Ca 2 + 或细胞内Ca 2 + 缓冲来复制。因此,我们的数据提供了第一个通过机械转导电流动态控制纤毛形态的实验证据。> DOI:

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