首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Usher type 1G protein sans is a critical component of the tip-link complex a structure controlling actin polymerization in stereocilia
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Usher type 1G protein sans is a critical component of the tip-link complex a structure controlling actin polymerization in stereocilia

机译:Usher型1G蛋白sans是尖端连接复合体的关键组成部分该复合体是控制纤毛中肌动蛋白聚合的结构

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摘要

The mechanotransducer channels of auditory hair cells are gated by tip-links, oblique filaments that interconnect the stereocilia of the hair bundle. Tip-links stretch from the tips of stereocilia in the short and middle rows to the sides of neighboring, taller stereocilia. They are made of cadherin-23 and protocadherin-15, products of the Usher syndrome type 1 genes USH1D and USH1F, respectively. In this study we address the role of sans, a putative scaffold protein and product of the USH1G gene. In Ush1g−/− mice, the cohesion of stereocilia is disrupted, and both the amplitude and the sensitivity of the transduction currents are reduced. In Ush1gfl/flMyo15-cre+/− mice, the loss of sans occurs postnatally and the stereocilia remain cohesive. In these mice, there is a decrease in the amplitude of the total transducer current with no loss in sensitivity, and the tips of the stereocilia in the short and middle rows lose their prolate shape, features that can be attributed to the loss of tip-links. Furthermore, stereocilia from these rows undergo a dramatic reduction in length, suggesting that the mechanotransduction machinery has a positive effect on F-actin polymerization. Sans interacts with the cytoplasmic domains of cadherin-23 and protocadherin-15 in vitro and is absent from the hair bundle in mice defective for either of the two cadherins. Because sans localizes mainly to the tips of short- and middle-row stereocilia in vivo, we conclude that it belongs to a molecular complex at the lower end of the tip-link and plays a critical role in the maintenance of this link.
机译:听觉毛细胞的机械换能器通道是由尖端连接的,倾斜的细丝将发束的立体毛发相互连接。尖端链接从短排和中间排的立体睫毛的尖端延伸到相邻的较高的立体睫毛的侧面。它们分别由钙粘着蛋白23和原钙粘蛋白15制成,它们分别是Usher综合征1型基因USH1D和USH1F的产物。在这项研究中,我们解决了sans(假定的支架蛋白和USH1G基因产物)的作用。在Ush1g -/-小鼠中,立体纤毛的内聚力被破坏,并且转导电流的幅度和灵敏度均降低。在Ush1g fl / fl Myo15-cre +/- 小鼠中,sans的丢失发生在出生后,而纤毛纤毛仍保持凝聚力。在这些小鼠中,总的换能器电流的幅度减小了,而灵敏度没有损失,短排和中排的横纹状纤毛的尖端失去了它们的扁长形状,这可以归因于尖端的损失。链接。此外,来自这些行的立体纤毛的长度显着减少,表明机械转导机制对F-肌动蛋白聚合具有积极作用。 Sans在体外与cadherin-23和protocadherin-15的胞质域相互作用,并且在两个钙粘着蛋白中的任一个都具有缺陷的小鼠的发束中不存在。由于sans在体内主要定位于短行和中行立体纤毛的尖端,因此我们得出的结论是,它属于尖端连接的下端的分子复合物,并且在维持该连接中起关键作用。

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