Biogenesis of Multivesicular Body and Protein Sorting: No One of ESCRT,Vps4 and Ubiquitination Can Be Missed

Pub Date : 2013-01-01 DOI:10.3724/sp.j.1206.2012.00171
X. Heng
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Abstract

Multivesicular body(MVB) is a dynamic subcellular organelle formed by invagination of the limiting membrane of late endosome.MVB is an essential transport and sorting station for membranes and proteins in eukaryotic organisms.MVB pathway is intimately involved in various processes,including signal transduction,cytokinesis,gene silencing,autophagy,protein quality control and virus budding.The biogenesis of MVB requires more than 20 vacuolar protein sorting(Vps) proteins.Many of them can assemble into four distinct complexes ESCRT 0,Ⅰ,Ⅱ,Ⅲ(endosomal sorting complexs required for transport) on the endosomal membrane.ESCRTs and Vps4 are considered to be the most important components in MVB pathway.ESCRT 0 together with clathrin can form microdomain on endosomal membrane where they cluster ubiquitinated cargo proteins.ESCRTⅠ and Ⅱ can induce the budding of intraluminal vesicles(ILVs),prompt the formation process and sort protein cargoes into ILVs.ESCRTⅢ can constrict,cleave the bud neck and finish the membrane abscission,the last stage of MVB formation.Vps4 can disassemble ESCRT complexes and recycle them.Ubiquitinated cargo proteins and ubiquitination can also regulate the localization and function of ESCRTs.Together,these recent discoveries demonstrate that the sequential and co-ordinated actions of ubiquitinated cargo proteins,ESCRTs and Vps4 are the major driving force for the biogenesis of MVB and protein sorting process.In this review,we focus on the protein-protein interaction and mainly discuss the assembly mechanism,interaction and function of ESCRT complexes and Vps4 high-order oligomers,as well as the regulation of ESCRTs by ubiquitinated proteins and ubiquitination.We also suggest prospective studies based on these discussions.
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多泡体的生物发生与蛋白质分选:ESCRT、Vps4和泛素化无一遗漏
多泡体(Multivesicular body, MVB)是一种动态的亚细胞细胞器,由晚期核内体的限制膜内陷而形成。MVB是真核生物中膜和蛋白质的重要转运和分选站。MVB通路与信号转导、细胞分裂、基因沉默、自噬、蛋白质量控制和病毒出芽等过程密切相关。MVB的生物发生需要20多种液泡蛋白分选(Vps)蛋白。它们中的许多可以在内体膜上组装成四种不同的复合物ESCRT 0,Ⅰ,Ⅱ,Ⅲ(运输所需的内体分选复合物)。escrt和Vps4被认为是MVB通路中最重要的组分。ESCRT 0与网格蛋白可在内体膜上形成微结构域,聚集泛素化货物蛋白。ESCRTⅠ和Ⅱ可以诱导腔内囊泡(ILVs)的出芽,促进形成过程,并将蛋白质货物分类到ILVs中。ESCRTⅢ可以收缩,切割芽颈,完成膜脱落,这是MVB形成的最后阶段。Vps4可以分解ESCRT复合物并回收它们。泛素化转运蛋白和泛素化也能调控escrt的定位和功能。总之,这些最近的发现表明,泛素化货物蛋白、ESCRTs和Vps4的顺序和协调作用是MVB生物发生和蛋白质分选过程的主要驱动力。本文从蛋白-蛋白相互作用的角度进行综述,主要讨论ESCRT复合物与Vps4高阶低聚物的组装机制、相互作用和功能,以及泛素化蛋白和泛素化对ESCRT的调控。我们还建议在这些讨论的基础上进行前瞻性研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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