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网格蛋白与脱衣被ATP酶之间的复合物形成。

Complex formation between clathrin and uncoating ATPase.

作者信息

Prasad K, Heuser J, Eisenberg E, Greene L

机构信息

Laboratory of Cell Biology, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Biol Chem. 1994 Mar 4;269(9):6931-9.

PMID:8120055
Abstract

The bovine brain uncoating ATPase, a constitutive 70-kDa heat shock protein, uncoats clathrin-coated vesicles in an ATP-dependent reaction. The uncoating ATPase-clathrin complex formed from the uncoating reaction was compared to the complex formed by directly binding free clathrin to uncoating ATPase. The amount of the latter complex shows a simple hyperbolic dependence on either free clathrin or free uncoating ATPase concentration, whichever is in excess, with a binding stoichiometry of one uncoating ATPase per clathrin heavy chain. ATP markedly increases the rates of formation and dissociation of this complex while ADP profoundly inhibits these rates. At low uncoating ATPase concentrations, much more complex is formed by uncoating than by directly binding clathrin to enzyme. However, during column chromatography or dilution for electron microscopy, both types of complex dissociate in ATP but not ADP, and electron microscopy of both types of complex diluted into ADP shows binding only to the vertex of the clathrin triskelion. We conclude that the uncoating ATPase forms only one type of complex with clathrin and has only one site for nucleotide; ADP at this site prevents either formation or dissociation of complex, whereas ATP at this site allows both processes to occur rapidly.

摘要

牛脑脱衣ATP酶是一种组成型70 kDa热休克蛋白,在ATP依赖性反应中使网格蛋白包被的小泡脱衣。将脱衣反应形成的脱衣ATP酶-网格蛋白复合物与通过将游离网格蛋白直接与脱衣ATP酶结合而形成的复合物进行比较。后一种复合物的量对游离网格蛋白或游离脱衣ATP酶浓度(以过量者为准)呈现简单的双曲线依赖性,结合化学计量为每条网格蛋白重链一个脱衣ATP酶。ATP显著增加该复合物的形成和解离速率,而ADP则强烈抑制这些速率。在低脱衣ATP酶浓度下,脱衣形成的复合物比将网格蛋白直接与酶结合形成的复合物多得多。然而,在柱色谱或用于电子显微镜的稀释过程中,两种类型的复合物在ATP中解离而不在ADP中解离,并且将两种类型的复合物稀释到ADP中的电子显微镜观察显示仅与网格蛋白三脚蛋白复合体的顶点结合。我们得出结论,脱衣ATP酶仅与网格蛋白形成一种类型的复合物,并且只有一个核苷酸位点;该位点的ADP阻止复合物的形成或解离,而该位点的ATP允许这两个过程快速发生。

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