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首页> 外文期刊>Human Molecular Genetics >Whirlin interacts with espin and modulates its actin-regulatory function: An insight into the mechanism of Usher syndrome type II
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Whirlin interacts with espin and modulates its actin-regulatory function: An insight into the mechanism of Usher syndrome type II

机译:Whirlin与espin相互作用并调节其肌动蛋白调节功能:洞悉II型Usher综合征的机制

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Whirlin mutations cause retinal degeneration and hearing loss in Usher syndrome type II (USH2) and non-syndromic deafness, DFNB31. Its protein recruits other USH2 causative proteins to form a complex at the periciliary membrane complex in photoreceptors and the ankle link of the stereocilia in hair cells. However, the biological function of this USH2 protein complex is largely unknown. Using a yeast two-hybrid screen, we identified espin, an actin-binding/bundling protein involved in human deafness when defective, as a whirlin-interacting protein. The interaction between these two proteins was confirmed by their coimmunoprecipitation and colocalization in cultured cells. This interaction involves multiple domains of both proteins and only occurs when espin does not bind to actin. Espin was partially colocalized with whirlin in the retina and the inner ear. In whirlin knockout mice, espin expression changed significantly in these two tissues. Further studies found that whirlin increased the mobility of espin and actin at the actin bundles cross-linked by espin and, eventually, affected the dimension of these actin bundles. In whirlin knockout mice, the stereocilia were thickened in inner hair cells. We conclude that the interaction between whirlin and espin and the balance between their expressions are required to maintain the actin bundle network in photoreceptors and hair cells. Disruption of this actin bundle network contributes to the pathogenic mechanism of hearing loss and retinal degeneration caused by whirlin and espin mutations. Espin is a component of the USH2 protein complex and could be a candidate gene for Usher syndrome.
机译:Whirlin突变导致II型Usher综合征(USH2)和非综合征性耳聋DFNB31引起视网膜变性和听力下降。它的蛋白质会募集其他USH2致病性蛋白质,以在感光细胞的睫状膜复合物和毛细胞中的立体睫毛的踝关节处形成复合物。但是,这种USH2蛋白复合物的生物学功能很大程度上未知。使用酵母双杂交筛选,我们确定espin(一种缺陷时与人类耳聋有关的肌动蛋白结合/捆绑蛋白)为旋转蛋白相互作用蛋白。这两种蛋白质之间的相互作用通过它们在培养细胞中的共免疫沉淀和共定位得到证实。这种相互作用涉及两种蛋白质的多个结构域,仅在espin不与肌动蛋白结合时发生。 Espin与whirlin在视网膜和内耳中部分共定位。在whirlin基因敲除小鼠中,espin表达在这两个组织中发生了显着变化。进一步的研究发现,whirlin增加了espin和actin在通过espin交联的肌动蛋白束处的迁移率,并最终影响了这些肌动蛋白束的尺寸。在whirlin基因敲除小鼠中,纤毛在内部毛细胞中增厚。我们得出的结论是,必须在陀螺蛋白和espin之间的相互作用及其表达之间的平衡来维持肌动蛋白束网络在感光器和毛细胞中的分布。该肌动蛋白束网络的破坏助长了由旋转蛋白和espin突变引起的听力丧失和视网膜变性的致病机制。 Espin是USH2蛋白复合物的组成部分,可能是Usher综合征的候选基因。

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