The Henry Wellcome Integrated Signalling Laboratories, Department of Biochemistry, School of Medical Sciences, University of Bristol, University Walk, Bristol BS8 1TD, United Kingdom.
Semin Cell Dev Biol. 2010 Jun;21(4):371-80. doi: 10.1016/j.semcdb.2009.11.009. Epub 2009 Nov 13.
The endocytic network is morphologically characterized by a wide variety of membrane bound compartments that are able to undergo dynamic re-modeling through tubular and vesicular structures. The precise molecular mechanisms governing such re-modeling, and the events that co-ordinated this with the major role of endosomes, cargo sorting, remain unclear. That said, recent work on a protein family of sorting nexins (SNX) - especially a subfamily of SNX that contain a BAR domain (SNX-BARs) - has begun to shed some much needed light on these issues and in particular the process of tubular-based endosomal sorting. SNX-BARs are evolutionary conserved in endosomal protein complexes such as retromer, where they co-ordinate membrane deformation with cargo selection. Furthermore a central theme emerges of SNX-BARs linking the forming membrane carrier to cytoskeletal elements for transport through motor proteins such as dynein. By studying these SNX-BARs, we are gaining an increasingly detailed appreciation of the mechanistic basis of endosomal sorting and how this highly dynamic process functions in health and disease.
内吞网络在形态上的特点是存在各种各样的膜结合区室,这些区室能够通过管状和囊泡结构进行动态重塑。然而,目前尚不清楚控制这种重塑的精确分子机制,以及与内体的主要作用、货物分拣相协调的事件。尽管如此,最近对分选连接蛋白(SNX)家族的研究——特别是含有 BAR 结构域的 SNX 亚家族(SNX-BARs)——已经开始为这些问题提供了一些急需的线索,尤其是基于管状的内体分拣过程。SNX-BAR 在包括逆行转运体在内的内体蛋白复合物中是进化保守的,在复合物中它们与货物选择一起协调膜的变形。此外,一个核心主题是 SNX-BAR 将正在形成的膜载体与细胞骨架元件连接起来,通过动力蛋白(如 dynein)进行运输。通过研究这些 SNX-BAR,我们越来越深入地了解内体分拣的机械基础,以及这个高度动态的过程在健康和疾病中的功能。