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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Development and regeneration of sensory transduction in auditory hair cells requires functional interaction between cadherin-23 and protocadherin-15.
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Development and regeneration of sensory transduction in auditory hair cells requires functional interaction between cadherin-23 and protocadherin-15.

机译:听觉毛细胞感觉传导的发展和再生需要钙粘蛋白23和原钙粘蛋白15之间的功能相互作用。

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摘要

Tip links are extracellular filaments that connect pairs of hair cell stereocilia and convey tension to mechanosensitive channels. Recent evidence suggests that tip links are formed by calcium-dependent interactions between the N-terminal domains of cadherin-23 (CDH23) and protocadherin-15 (PCDH15). Mutations in either CDH23 or PCDH15 cause deafness in mice and humans, indicating the molecules are required for normal inner ear function. However, there is little physiological evidence to support a direct role for CDH23 and PCDH15 in hair cell mechanotransduction. To investigate the contributions of CDH23 and PCDH15 to mechanotransduction and tip-link formation, we examined outer hair cells of mouse cochleas during development and after chemical disruption of tip links. We found that tip links and mechanotransduction with all the qualitative properties of mature transduction recovered within 24 h after disruption. To probe tip-link formation, we measured transduction currents after extracellular application of recombinant CDH23 and PCDH15 fragments, which included putative interaction domains (EC1). Both fragments inhibited development and regeneration of transduction but did not disrupt transduction in mature cells. PCDH15 fragments that carried a mutation in EC1 that causes deafness in humans did not inhibit transduction development or regeneration. Immunolocalization revealed wild-type fragments bound near the tips of hair cell stereocilia. Scanning electron micrographs revealed that hair bundles exposed to fragments had a reduced number of linkages aligned along the morphological axis of sensitivity of the bundle. Together, the data provide direct evidence implicating CDH23 and PCDH15 proteins in the formation of tip links during development and regeneration of mechanotransduction.
机译:尖端连接是细胞外细丝,它们连接成对的毛细胞立体纤毛并将张力传递至机械敏感通道。最近的证据表明,尖端连接是由钙粘着蛋白23(CDH23)和原钙粘着蛋白15(PCDH15)的N末端结构域之间的钙依赖性相互作用形成的。 CDH23或PCDH15中的突变会在小鼠和人类中引起耳聋,表明该分子是正常内耳功能所必需的。但是,几乎没有生理证据支持CDH23和PCDH15在毛细胞机械转导中具有直接作用。为了研究CDH23和PCDH15对机械转导和尖端链接形成的贡献,我们在发育过程中以及尖端链接的化学破坏后检查了小鼠耳蜗的外毛细胞。我们发现尖端连接和机械转导与成熟转导的所有定性性质在干扰后24小时内即可恢复。为了探测末端连接的形成,我们在细胞外应用重组CDH23和PCDH15片段(包括推定的相互作用域(EC1))后测量了转导电流。两个片段均抑制转导的发育和再生,但不破坏成熟细胞中的转导。在EC1中携带导致人类耳聋的突变的PCDH15片段不会抑制转导的发育或再生。免疫定位显示在毛细胞立体纤毛尖端附近结合的野生型片段。扫描电子显微照片显示,暴露于片段的发束沿发束的敏感性形态轴排列的连接数目减少。总之,这些数据提供了直接证据,表明在机械转导的发育和再生过程中,CDH23和PCDH15蛋白参与了末端连接的形成。

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