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Structural basis for cargo regulation of COPII coat assembly

机译:COPII外套组件货物监管的结构基础

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Using cryo-electron microscopy, we have solved the structure of an icosidodecahedral COPII coat involved in cargo export from the endoplasmic reticulum ( ER) coassembled from purified cargo adaptor Sec23-24 and Sec13-31 lattice-forming complexes. The coat structure shows a tetrameric assembly of the Sec23-24 adaptor layer that is well positioned beneath the vertices and edges of the Sec13-31 lattice. Fitting the known crystal structures of the COPII proteins into the density map reveals a flexible hinge region stemming from interactions between WD40 beta-propeller domains present in Sec13 and Sec31 at the vertices. The structure shows that the hinge region can direct geometric cage expansion to accommodate a wide range of bulky cargo, including procollagen and chylomicrons, that is sensitive to adaptor function in inherited disease. The COPII coat structure leads us to propose a mechanism by which cargo drives cage assembly and membrane curvature for budding from the ER.
机译:使用低温电子显微镜,我们已经解决了二十面体二十面体COPII涂层的结构,该涂层涉及从纯化的货物适配器Sec23-24和Sec13-31形成晶格的复合体共同组装的内质网(ER)出口货物。涂层结构显示了Sec23-24衔接子层的四聚体组件,该组件位于Sec13-31晶格的顶点和边缘下方。将COPII蛋白的已知晶体结构拟合到密度图中,揭示了一个柔性铰链区,该铰链区源于Sec13和Sec31在顶点处存在的WD40β-螺旋结构域之间的相互作用。该结构表明,铰链区可以指导几何笼扩展,以容纳对原发性疾病中的衔接子功能敏感的各种大体积货物,包括胶原蛋白和乳糜微粒。 COPII涂层结构使我们提出了一种机制,通过该机制,货物驱动笼组件和膜曲率以从ER萌芽。

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