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Helical Structures of ESCRT-III Are Disassembled by VPS4

机译:VPS4分解ESCRT-III的螺旋结构

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During intracellular membrane trafficking and remodeling, protein complexes known as the ESCRTs (endosomal sorting complexes required for transport) interact with membranes and are required for budding processes directed away from the cytosol, including the budding of intralumenal vesicles to form muttivesicular bodies; for the budding of some enveloped viruses; and for daughter cell scission in cytokinesis. We found that the ESCRT-III proteins CHMP2A and CHMP3 (charged multivesicular body proteins 2A and 3) could assemble in vitro into helical tubular structures that expose their membrane interaction sites on the outside of the tubule, whereas the AAA-type adenosine triphosphatase VPS4 could bind on the inside of the tubule and disassemble the tubes upon adenosine triphosphate hydrolysis. CHMP2A and CHMP3 copolymerized in solution, and their membrane targeting was cooperatively enhanced on planar lipid bilayers. Such helical CHMP structures could thus assemble within the neck of an inwardly budding vesicle, catalyzing late steps in budding under the control of VPS4.
机译:在细胞内膜运输和重塑过程中,称为ESCRTs的蛋白质复合物(运输所需的内体分选复合物)与膜相互作用,是定向离开细胞质的出芽过程所必需的,包括腔内囊泡出芽形成变囊体;用于一些包膜病毒的萌芽;以及针对胞质分裂的子细胞分裂。我们发现,ESCRT-III蛋白CHMP2A和CHMP3(带电荷的多囊泡体蛋白2A和3)可以在体外组装成螺旋管状结构,从而暴露其在小管外侧的膜相互作用位点,而AAA型腺苷三磷酸酶VPS4可以结合在肾小管的内部,并在三磷酸腺苷水解后拆解试管。 CHMP2A和CHMP3在溶液中共聚,并且在平面脂质双层上协同增强了它们的膜靶向性。这样的螺旋CHMP结构可以因此在向内发芽的囊泡的颈部内组装,在VPS4的控制下催化出芽的后期步骤。

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