Aridor Meir, Traub Linton M
Department of Cell Biology and Physiology, University of Pittsburgh School of Medicine, 3500 Terrace St., Pittsburgh, PA 15261, USA. aridor+@pitt.edu
Traffic. 2002 Aug;3(8):537-46. doi: 10.1034/j.1600-0854.2002.30804.x.
Intracellular traffic is mediated by vesicular/tubular carriers. The carriers are formed by the activity of cytosolic coat proteins that are recruited to their target membranes and deform these membranes into buds and vesicles. Specific interactions between recruited coat subunits and short peptide sequences (transport motifs) on cargo proteins direct the incorporation of cargo into budded vesicles. Here, we focus on cargo selection reactions mediated by COPII and AP-2/clathrin vesicle coat complexes to explore common mechanisms by which coat assembly support localized and selective cargo sorting. Recent findings suggest that multiple, low-affinity interactions are employed in a cooperative manner to support coat assembly and enable cargo recognition. Thus low-binding affinities between coat subunits and transport motifs are transiently transformed into high-avidity, multivalent and selective interactions at vesicle bud sites. The temporal and regulated nature of the interactions provide the key to cargo selection.
细胞内运输由囊泡/管状载体介导。这些载体由细胞溶质包被蛋白的活性形成,这些蛋白被招募到其靶膜上,并将这些膜变形为芽和囊泡。招募的包被亚基与货物蛋白上的短肽序列(运输基序)之间的特异性相互作用指导货物掺入出芽的囊泡中。在这里,我们专注于由COPII和AP-2/网格蛋白囊泡包被复合物介导的货物选择反应,以探索包被组装支持局部和选择性货物分选的共同机制。最近的研究结果表明,多种低亲和力相互作用以协同方式发挥作用,以支持包被组装并实现货物识别。因此,包被亚基与运输基序之间的低结合亲和力在囊泡芽位点被短暂转化为高亲和力、多价和选择性相互作用。这些相互作用的时间性和可调控性为货物选择提供了关键。