膜运输和蛋白质分类的新见解。

Merran C Derby, Paul A Gleeson
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引用次数: 110

摘要

分泌途径和内吞途径中的蛋白质运输是一个多步骤的过程,包括运载特定货物的运输载体的产生,装载货物的运输载体在隔室之间的运输,以及这些运输载体与靶膜的特异性融合。这些膜介导过程的调控涉及一系列复杂的蛋白质和脂质相互作用。随着膜运输的机制和调控过程的定义,越来越明显的是,膜运输与许多其他细胞过程密切相关,如内质网(ER)的质量控制、细胞骨架动力学、受体信号传导和有丝分裂。膜运输的保真度依赖于组分在细胞器上的正确组装。外周蛋白的募集在定义细胞器身份和膜亚域的建立中起着关键作用,这对于调节囊泡运输至关重要。膜子结构域生物发生的分子机制也是理解货物如何分类和分离以及不同运输载体群体如何产生的核心。在这篇综述中,我们将关注细胞器身份、膜亚域、高尔基体运输的调节以及生理系统中解剖通路的进展等新兴主题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New insights into membrane trafficking and protein sorting.

Protein transport in the secretory and endocytic pathways is a multistep process involving the generation of transport carriers loaded with defined sets of cargo, the shipment of the cargo-loaded transport carriers between compartments, and the specific fusion of these transport carriers with a target membrane. The regulation of these membrane-mediated processes involves a complex array of protein and lipid interactions. As the machinery and regulatory processes of membrane trafficking have been defined, it is increasingly apparent that membrane transport is intimately connected with a number of other cellular processes, such as quality control in the endoplasmic reticulum (ER), cytoskeletal dynamics, receptor signaling, and mitosis. The fidelity of membrane trafficking relies on the correct assembly of components on organelles. Recruitment of peripheral proteins plays a critical role in defining organelle identity and the establishment of membrane subdomains, essential for the regulation of vesicle transport. The molecular mechanisms for the biogenesis of membrane subdomains are also central to understanding how cargo is sorted and segregated and how different populations of transport carriers are generated. In this review we will focus on the emerging themes of organelle identity, membrane subdomains, regulation of Golgi trafficking, and advances in dissecting pathways in physiological systems.

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