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首页> 外文期刊>The Journal of biological chemistry >Charged Multivesicular Body Protein 2B (CHMP2B) of the Endosomal Sorting Complex Required for Transport-III (ESCRT-III) Polymerizes into Helical Structures Deforming the Plasma Membrane
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Charged Multivesicular Body Protein 2B (CHMP2B) of the Endosomal Sorting Complex Required for Transport-III (ESCRT-III) Polymerizes into Helical Structures Deforming the Plasma Membrane

机译:转运-III(ESCRT-III)所需的内体分选复合体的带电多猪体蛋白2B(CHMP2B)聚合成螺旋结构,使等离子体膜变形

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摘要

The endosomal sorting complexes required for transport (ESCRT-0-III) allow membrane budding and fission away from the cytosol. This machinery is used during multivesicular endosome biogenesis, cytokinesis, and budding of some enveloped viruses. Membrane fission is catalyzed by ESCRT-III complexes made of polymers of charged multivesicular body proteins (CHMPs) and by the AAA-type ATPase VPS4. How and which of the ESCRT-III subunits sustain membrane fission from the cytoplasmic surface remain uncertain. In vitro, CHMP2 and CHMP3 recombinant proteins polymerize into tubular helical structures, which were hypothesized to drive vesicle fission. However, this model awaits the demonstration that such structures exist and can deform membranes in cellulo. Here, we show that depletion of VPS4 induces specific accumulation of endogenous CHMP2B at the plasma membrane. Unlike other CHMPs, overexpressed full-length CHMP2B polymerizes into long, rigid tubes that protrude out of the cell. CHMP4s relocalize at the base of the tubes, the formation of which depends on VPS4. Cryo-EM of the CHMP2B membrane tubes demonstrates that CHMP2B polymerizes into a tightly packed helical lattice, in close association with the inner leaflet of the membrane tube. This association is tight enough to deform the lipid bilayer in cases where the tubular CHMP2B helix varies in diameter or is closed by domes. Thus, our observation that CHMP2B polymerization scaffolds membranes in vivo represents a first step toward demonstrating its structural role during outward membrane deformation.
机译:运输(ESCRT-0-III)所需的内体分选复合物允许膜芽和裂变远离胞浆溶胶。该机器用于在多产内体生物发生,细胞因子和一些包膜病毒的萌芽期间使用。膜裂变被ESCRT-III络合物催化,由带电的多猪体蛋白(CHMPS)和AAA型ATP酶VPS4制成的聚合物制成。 Escrt-III亚基的HOVER-III亚基维持来自细胞质表面的膜裂变仍然不确定。体外,CHMP2和CHMP3重组蛋白聚合到管状螺旋结构中,被假设以驱动囊泡裂变。然而,这种模型等待证明这种结构存在并且可以在纤维素中变形膜。在这里,我们表明VPS4的耗尽诱导质膜中的内源CHMP2B的特异性积累。与其他CHMPS不同,过表达全长CHMP2B聚合成长,刚性管子,该长管突出电池。 CHMP4s在管的底部重新定位,形成vps4。 CHMP2B膜管的Cryo-EM表明CHMP2B在与膜管内部瓣盖上密切相关的紧密关系中的CHMP2B聚合到紧密包装的螺旋晶格中。这种关联足够紧,在管状CHMP2B螺旋直径变化或通过圆顶关闭的情况下使脂质双层变形。因此,我们观察到在体内ChMP2B聚合支架膜在朝向外膜变形期间证明其结构作用的第一步。

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