Ungewickell E, Ungewickell H, Holstein S E, Lindner R, Prasad K, Barouch W, Martin B, Greene L E, Eisenberg E
Department of Pathology, Washington University School of Medicine, St Louis, Missouri 63110, USA.
Nature. 1995 Dec 7;378(6557):632-5. doi: 10.1038/378632a0.
Clathrin-coated vesicles transport selected integral membrane proteins from the cell surface and the trans-Golgi network to the endosomal system. Before fusing with their target the vesicles must be stripped of their coats. This process is effected by the chaperone protein hsp70c together with a 100K cofactor which we here identify as the coat protein auxilin. Auxilin binds with high affinity to assembled clathrin lattices and, in the presence of ATP, recruits hsp70c. Dissociation of the lattice does not depend as previously supposed on clathrin light chains or on the amino-terminal domain of the heavy chain. The presence of a J-domain at its carboxy terminus now defines auxilin as a member of the DnaJ protein family. In conjunction with hsp70, DnaJ proteins catalyse protein folding, protein transport across membranes and the selective disruption of protein-protein interactions. We show that deletion of the J-domain of auxilin results in the loss of cofactor activity.
网格蛋白包被的囊泡将特定的整合膜蛋白从细胞表面和反式高尔基体网络转运至内体系统。在与靶标融合之前,囊泡必须脱去其包被。此过程由伴侣蛋白hsp70c与一种100K辅因子共同完成,我们在此确定该辅因子为包被蛋白auxilin。Auxilin以高亲和力与组装好的网格蛋白晶格结合,并在ATP存在的情况下招募hsp70c。晶格的解离并不像之前所认为的那样依赖于网格蛋白轻链或重链的氨基末端结构域。其羧基末端存在一个J结构域,这现在将auxilin定义为DnaJ蛋白家族的一员。与hsp70一起,DnaJ蛋白催化蛋白质折叠、蛋白质跨膜转运以及蛋白质 - 蛋白质相互作用的选择性破坏。我们表明,auxilin的J结构域缺失会导致辅因子活性丧失。