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The endosome-associated protein Hrs is hexameric and controls cargo sorting as a 'master molecule'

机译:内体相关蛋白Hrs是六聚体,可作为“主分子”控制货物分选

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摘要

The structure of the endosomal-associated protein, Hrs, has been determined with cryo-electron microscopy. Hrs interacts with a number of proteins, including SNAP-25 and STAM1, forming a complex that binds ubiquitin moieties. Analytical ultracentrifugation studies revealed that Hrs exists as a hexamer. The symmetry and the structure of the hexameric form of Hrs were determined with the single-particle reconstruction method. Hrs; comprises three antiparallel dimers with a central core and distinct caps on either end. Crystal structures of VHS and FYVE domains fit into the Hrs end caps in the EM density map. Thus, the location of domains that interact with the endosomal membrane, the VHS, FYVE, and C-terminal domains, facilitates the anchorage of Hrs to the membrane, initiating the functional processes of Hrs; on the endosome. Based on our model, the Hrs hexamer interacts with the membrane and acts as a "master molecule" that presents multiple sites for protein binding.
机译:内体相关蛋白Hrs的结构已通过冷冻电子显微镜确定。 Hrs与许多蛋白质相互作用,包括SNAP-25和STAM1,形成结合泛素部分的复合物。超离心分析研究表明,Hrs以六聚体形式存在。 Hrs的六聚体形式的对称性和结构用单粒子重建方法确定。小时;由三个反平行二聚体组成,每个二聚体具有中央核心,并且两端各不相同。 VHS和FYVE域的晶体结构适合EM密度图中的Hrs端盖。因此,与内体膜相互作用的结构域,VHS,FYVE和C末端结构域的位置有助于将Hrs锚定在膜上,从而启动Hrs的功能过程。在内体上。根据我们的模型,Hrs六聚体与膜相互作用,并充当“主分子”,为蛋白质结合提供多个位点。

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