The Endosomal Network: Mediators and Regulators of Endosome Maturation.

Maria Podinovskaia, Anne Spang
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引用次数: 22

Abstract

Endocytosis is a means for the cell to sample its environment for nutrients and regulate plasma membrane (PM) composition and area. Whereas the majority of internalized cargo is recycled back to the cell surface, select material is sent to the lysosome for degradation. Endosomes further play major roles in central cell activities as diverse as establishment of cell polarity and signaling, lysosomal storage and immunity. The complexity of endosomal functions is reflected by the extensive changes to endosome properties as they mature. The identity of individual endosomes is influenced by the presence of specific Rab GTPases and phosphoinositides (PIPs), which coordinate membrane traffic and facilitate endosomal functions. Motors and tethers direct the endosomes to the required locations and moderate fusion with other organelles. The maintenance of the elaborate endosomal network is supported by the ER and the trans-Golgi network (TGN), which promote the exchange of membrane components, provide enzymes, and assist with signaling. Additionally, V-ATPase is emerging as an underappreciated coordinator of endosome maturation and cell signaling. The inputs of the various mediators of endosome maturation are tightly regulated and coordinated to ensure appropriate maintenance and functioning of endosomes at each stage of the maturation process. Perturbations in endosome maturation are implicated in devastating diseases, such as neurodegeneration and cancer, and the endosome maturation processes are manipulated and exploited by intracellular pathogens to meet their own needs. A greater understanding of coordination and fine-tuning of endosome maturation will help us address various pathologies more effectively.

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内体网络:内体成熟的介质和调节因子。
胞吞作用是细胞从环境中获取营养物质并调节质膜(PM)组成和面积的一种手段。虽然大部分内化的货物被回收到细胞表面,但精选的材料被送到溶酶体降解。核内体还在细胞极性和信号的建立、溶酶体的储存和免疫等多种中心细胞活动中发挥重要作用。随着核内体的成熟,核内体性质的广泛变化反映了核内体功能的复杂性。单个内体的身份受到特定Rab gtpase和磷酸肌苷(PIPs)存在的影响,它们协调膜运输并促进内体功能。马达和系绳将核内体引导到所需的位置,并与其他细胞器适度融合。复杂的内体网络的维持由内质网和反式高尔基网络(TGN)支持,它们促进膜组分的交换,提供酶并协助信号传导。此外,v - atp酶是内核体成熟和细胞信号传导的一个未被充分认识的协调者。核内体成熟过程中各种介质的输入受到严格的调节和协调,以确保核内体在成熟过程的每个阶段都有适当的维持和功能。核内体成熟的扰动与毁灭性疾病有关,如神经变性和癌症,核内体成熟过程被细胞内病原体操纵和利用,以满足其自身的需要。对内核体成熟的协调和微调的更好理解将有助于我们更有效地解决各种病理。
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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
7
期刊介绍: Molecular biology has been providing an overwhelming amount of data on the structural components and molecular machineries of the cell and its organelles and the complexity of intra- and intercellular communication. The molecular basis of hereditary and acquired diseases is beginning to be unravelled, and profound new insights into development and evolutionary biology have been gained from molecular approaches. Progress in Molecular and Subcellular Biology summarises the most recent developments in this fascinating area of biology.
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