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网格蛋白篮解离机制:DnaJ同源辅助蛋白的蛋白质结构域的不同功能

Mechanism of clathrin basket dissociation: separate functions of protein domains of the DnaJ homologue auxilin.

作者信息

Holstein S E, Ungewickell H, Ungewickell E

机构信息

Center for Immunology, Department of Pathology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Cell Biol. 1996 Nov;135(4):925-37. doi: 10.1083/jcb.135.4.925.

Abstract

Auxilin was recently identified as cofactor for hsc70 in the uncoating of clathrin-coated vesicles (Ungewickell, E., H. Ungewickell, S.E. Holstein, R. Lindner, K. Prasad, W. Barouch, B. Martin, L.E. Greene, and E. Eisenberg. 1995. Nature (Lond.). 378: 632-635). By constructing different glutathione-S-transferase (GST)-auxilin fragments, we show here that cooperation of auxilin's J domain (segment 813-910) with an adjoining clathrin binding domain (segment 547-814) suffices to dissociate clathrin baskets in the presence of hsc70 and ATP. When the two domains are expressed as separate GST fusion proteins, the cofactor activity is lost, even though both retain their respective functions. The clathrin binding domain binds to triskelia like intact auxilin with a maximum stoichiometry of 3 and concomitantly promotes their assembly into regular baskets. A fragment containing auxilin's J domain associates in an ATP-dependent reaction with hsc70 to form a complex with a half-life of 8 min at 25 degrees C. When the clathrin binding domain and the J domain are recombined via dimerization of their GST moieties, cofactor activity is partially recovered. The interaction between auxilin's J domain and hsc70 causes rapid hydrolysis of bound ATP. Release of inorganic phosphate appears to be correlated with the disintegration of the complex between auxilin's J domain and hsc70. We infer that the metastable complex composed of auxilin, hsc70, ADP, and P(i) contains an activated form of hsc70, primed to engage clathrin that is brought into apposition with it by the DnaJ homologue auxilin.

摘要

辅助蛋白最近被确定为在网格蛋白包被小泡脱包被过程中热休克蛋白70(hsc70)的辅因子(翁格维克尔,E.,H. 翁格维克尔,S.E. 霍尔斯坦,R. 林德纳,K. 普拉萨德,W. 巴鲁克,B. 马丁,L.E. 格林,和E. 艾森伯格。1995年。《自然》(伦敦)。378: 632 - 635)。通过构建不同的谷胱甘肽 - S - 转移酶(GST) - 辅助蛋白片段,我们在此表明辅助蛋白的J结构域(813 - 910片段)与相邻的网格蛋白结合结构域(547 - 814片段)协同作用,在hsc70和ATP存在的情况下足以使网格蛋白篮解离。当这两个结构域作为单独的GST融合蛋白表达时,即使它们都保留各自的功能,辅因子活性也会丧失。网格蛋白结合结构域以最大化学计量比3与三脚蛋白复合体结合,就像完整的辅助蛋白一样,并同时促进它们组装成规则的篮状结构。包含辅助蛋白J结构域的片段在ATP依赖的反应中与hsc70结合,在25℃下形成半衰期为8分钟的复合物。当网格蛋白结合结构域和J结构域通过其GST部分的二聚化重新组合时,辅因子活性部分恢复。辅助蛋白J结构域与hsc70之间的相互作用导致结合的ATP快速水解。无机磷酸的释放似乎与辅助蛋白J结构域和hsc70之间复合物的解体相关。我们推断由辅助蛋白、hsc70、ADP和无机磷酸组成的亚稳复合物包含一种活化形式的hsc70,准备好与由DnaJ同源物辅助蛋白带到与其并列位置的网格蛋白结合。

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