Integration of the Endocytic System into the Network of Cellular Functions.

Noga Budick-Harmelin, Marta Miaczynska
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引用次数: 6

Abstract

Maintenance of physiologic cellular functions and homeostasis requires highly coordinated interactions between different cellular compartments. In this regard, the endocytic system, which plays a key role in cargo internalization and trafficking within the cell, participates in upkeep of intracellular dynamics, while communicating with multiple organelles. This chapter will discuss the function of endosomes from a standpoint of cellular integration. We will present examples of different types of interactions between endosomes and other cellular compartments, such as the endoplasmic reticulum (ER), mitochondria, the plasma membrane (PM), and the nuclear envelope. In addition, we will describe the incorporation of endocytic components, such as endosomal sorting complexes required for transport (ESCRT) proteins and Rab small GTPases, into cellular processes that operate outside of the endolysosomal pathway. The significance of endosomal interactions for processes such as signaling regulation, intracellular trafficking, organelle dynamics, metabolic control, and homeostatic responses will be reviewed. Accumulating data indicate that beyond its involvement in cargo transport, the endocytic pathway is comprehensively integrated into other systems of the cell and plays multiple roles in the complex net of cellular functions.

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内吞系统与细胞功能网络的整合。
维持生理细胞功能和体内平衡需要不同细胞间高度协调的相互作用。在这方面,内吞系统在细胞内货物内化和运输中起着关键作用,参与维持细胞内动力学,同时与多个细胞器通信。本章将从细胞整合的角度讨论核内体的功能。我们将介绍核内体与其他细胞区室(如内质网(ER)、线粒体、质膜(PM)和核膜)之间不同类型相互作用的例子。此外,我们将描述内吞噬成分的结合,如运输所需的内体分选复合物(ESCRT)蛋白质和Rab小gtpase,进入内溶酶体途径外的细胞过程。本文将回顾内体相互作用在信号调节、细胞内运输、细胞器动力学、代谢控制和稳态反应等过程中的重要性。越来越多的数据表明,除了参与货物运输外,内吞途径还全面整合到细胞的其他系统中,并在复杂的细胞功能网络中发挥多种作用。
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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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