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The giant spectrin βV couples the molecular motors to phototransduction and Usher syndrome type I proteins along their trafficking route

机译:巨大的血影蛋白βV沿分子运输路线将分子马达与光转导和Usher综合征I型蛋白偶联

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Mutations in the myosin VIIa gene cause Usher syndrome type IB (USH1B), characterized by deaf-blindness. A delay of opsin trafficking has been observed in the retinal photoreceptor cells of myosin VIIa-deficient mice. Weidentified spectrinbV, the mammalianb-heavy spectrin, as amyosin VIIa-and rhodopsin-interacting partner in photoreceptor cells. Spectrin bV displays a polarized distribution from the Golgi apparatus to the base of the outer segment, which, unlike that of other b spectrins, matches the trafficking route of opsin and other phototransduction proteins. Formation of spectrin bV-rhodopsin complex could be detected in the differentiating photoreceptors assoon as their outer segment emerges. Afailure of the spectrinbV-mediated coupling between myosin VIIa and opsin molecules thus probably accounts for the opsin transport delay in myosin VIIa-deficient mice. We showed that spectrin bV also associates with two USH1 proteins, sans (USH1G) and harmonin (USH1C). Spectrins are supposed to function as heteromers of a and b subunits, but fluorescence resonance energy transfer and in vitro binding experiments indicated that spectrin bV can also form homodimers, which likely supports its aII-independent bV functions. Finally, consistent with its distribution along the connecting cilia axonemes, spectrin bV binds to several subunits of the microtubule-based motor proteins, kinesin II and the dynein complex. We therefore suggest that spectrin bV homomers couple some USH1 proteins, opsin and other phototransduction proteins to both actin-and microtubule-based motors, thereby contributing to their transport towards the photoreceptor outer disks.
机译:肌球蛋白VIIa基因的突变会导致IB型Usher综合征(USH1B),其特征是聋盲。在肌球蛋白VIIa缺陷型小鼠的视网膜感光细胞中观察到视蛋白运输的延迟。我们确定spectrinbV,哺乳动物b重的血影蛋白,是感光细胞中的肌球蛋白VIIa和视紫红质的相互作用伴侣。血影蛋白bV显示从高尔基体到外段基部的极化分布,与其他b血影蛋白不同,它与视蛋白和其他光转导蛋白的运输途径相匹配。当分化的感光细胞外段出现时,可以检测到血红蛋白bV-视紫红质复合物的形成。因此,肌球蛋白VIIa和视蛋白分子之间的SpectrinbV介导的偶联失败可能是造成肌球蛋白VIIa缺陷小鼠视蛋白运输延迟的原因。我们显示血影蛋白bV还与两个USH1蛋白关联,sans(USH1G)和harmonin(USH1C)。推测光谱蛋白起a和b亚基的异聚体的作用,但是荧光共振能量转移和体外结合实验表明,光谱蛋白bV也可以形成同型二聚体,这可能支持其不依赖aII的bV功能。最后,与其沿连接纤毛轴突的分布相一致,血影蛋白bV结合到基于微管的运动蛋白,驱动蛋白II和动力蛋白复合物的几个亚基上。因此,我们建议血影蛋白bV同聚物将一些USH1蛋白,视蛋白和其他光转导蛋白偶联至基于肌动蛋白和微管的马达,从而有助于其向感光外盘的转运。

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