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首页> 外文期刊>Development >Transmembrane protein OSTA-1 shapes sensory cilia morphology via regulation of intracellular membrane trafficking in C. Elegans
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Transmembrane protein OSTA-1 shapes sensory cilia morphology via regulation of intracellular membrane trafficking in C. Elegans

机译:跨膜蛋白OSTA-1通过调节线虫的胞内膜运输来塑造感觉纤毛形态。

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摘要

The structure and function of primary cilia are critically dependent on intracellular trafficking pathways that transport ciliary membrane and protein components. The mechanisms by which these trafficking pathways are regulated are not fully characterized. Here we identify the transmembrane protein OSTA-1 as a new regulator of the trafficking pathways that shape the morphology and protein composition of sensory cilia in C. elegans. osta-1 encodes an organic solute transporter alpha-like protein, mammalian homologs of which have been implicated in membrane trafficking and solute transport, although a role in regulating cilia structure has not previously been demonstrated. We show that mutations in osta-1 result in altered ciliary membrane volume, branch length and complexity, as well as defects in localization of a subset of ciliary transmembrane proteins in different sensory cilia types. OSTA- 1 is associated with transport vesicles, localizes to a ciliary compartment shown to house trafficking proteins, and regulates both retrograde and anterograde flux of the endosome-associated RAB-5 small GTPase. Genetic epistasis experiments with sensory signaling, exocytic and endocytic proteins further implicate OSTA-1 as a crucial regulator of ciliary architecture via regulation of cilia- destined trafficking. Our findings suggest that regulation of transport pathways in a cell type-specific manner contributes to diversity in sensory cilia structure and might allow dynamic remodeling of ciliary architecture via multiple inputs.
机译:原发纤毛的结构和功能严重依赖于运输纤毛膜和蛋白质成分的细胞内运输途径。这些贩运途径受到调控的机制尚未完全阐明。在这里,我们确定跨膜蛋白OSTA-1是一种新的调节形态特征和秀丽隐杆线虫纤毛形态和蛋白组成的运输途径的调节剂。 osta-1编码一种有机溶质转运蛋白α样蛋白,尽管其哺乳动物同源物与膜转运和溶质转运有关,但以前尚未证明其在调节纤毛结构中的作用。我们显示,osta-1中的突变会导致改变的纤毛膜体积,分支长度和复杂性,以及在不同的感官纤毛类型中的一部分纤毛跨膜蛋白的定位缺陷。 OSTA-1与运输小泡相关,位于显示为容纳运输蛋白的睫状区,并调节与内体相关的RAB-5小GTP酶的逆行和顺行通量。带有感觉信号,胞外蛋白和胞吞蛋白的基因上位性实验进一步暗示了OSTA-1通过调节纤毛运输成为纤毛结构的重要调节剂。我们的发现表明,以细胞类型特异性的方式调节运输途径有助于感觉纤毛结构的多样性,并可能允许通过多个输入对纤毛结构进行动态重塑。

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