Scourfield Edward J, Martin-Serrano Juan
Faculty of Life Sciences & Medicine, Department of Infectious Diseases, King's College London, London, U.K.
Biochem Soc Trans. 2017 Jun 15;45(3):613-634. doi: 10.1042/BST20160479.
The vast expansion in recent years of the cellular processes promoted by the endosomal sorting complex required for transport (ESCRT) machinery has reinforced its identity as a modular system that uses multiple adaptors to recruit the core membrane remodelling activity at different intracellular sites and facilitate membrane scission. Functional connections to processes such as the aurora B-dependent abscission checkpoint also highlight the importance of the spatiotemporal regulation of the ESCRT machinery. Here, we summarise the role of ESCRTs in viral budding, and what we have learned about the ESCRT pathway from studying this process. These advances are discussed in the context of areas of cell biology that have been transformed by research in the ESCRT field, including cytokinetic abscission, nuclear envelope resealing and plasma membrane repair.
近年来,由转运所需内体分选复合物(ESCRT)机制所推动的细胞过程大幅扩展,这强化了其作为模块化系统的特性,该系统利用多种衔接蛋白在不同细胞内位点募集核心膜重塑活性并促进膜分裂。与诸如极光B依赖性分裂检查点等过程的功能联系也凸显了ESCRT机制时空调节的重要性。在这里,我们总结了ESCRT在病毒出芽中的作用,以及我们从研究这一过程中所了解到的ESCRT途径。这些进展将在细胞生物学领域的背景下进行讨论,这些领域已因ESCRT领域的研究而发生变革,包括细胞分裂期分裂、核膜重新封闭和质膜修复。