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肌动蛋白结合蛋白Hip1R在内吞作用的早期阶段与网格蛋白结合,并在体外促进网格蛋白组装。

The actin-binding protein Hip1R associates with clathrin during early stages of endocytosis and promotes clathrin assembly in vitro.

作者信息

Engqvist-Goldstein A E, Warren R A, Kessels M M, Keen J H, Heuser J, Drubin D G

机构信息

Department of Molecular and Cell Biology, University of California at Berkeley, Berkeley, CA 94720, USA.

出版信息

J Cell Biol. 2001 Sep 17;154(6):1209-23. doi: 10.1083/jcb.200106089.

Abstract

Huntingtin-interacting protein 1 related (Hip1R) is a novel component of clathrin-coated pits and vesicles and is a mammalian homologue of Sla2p, an actin-binding protein important for both actin organization and endocytosis in yeast. Here, we demonstrate that Hip1R binds via its putative central coiled-coil domain to clathrin, and provide evidence that Hip1R and clathrin are associated in vivo at sites of endocytosis. First, real-time analysis of Hip1R-YFP and DsRed-clathrin light chain (LC) in live cells revealed that these proteins show almost identical temporal and spatial regulation at the cell cortex. Second, at the ultrastructure level, immunogold labeling of 'unroofed' cells showed that Hip1R localizes to clathrin-coated pits. Third, overexpression of Hip1R affected the subcellular distribution of clathrin LC. Consistent with a functional role for Hip1R in endocytosis, we also demonstrated that it promotes clathrin cage assembly in vitro. Finally, we showed that Hip1R is a rod-shaped apparent dimer with globular heads at either end, and that it can assemble clathrin-coated vesicles and F-actin into higher order structures. In total, Hip1R's properties suggest an early endocytic function at the interface between clathrin, F-actin, and lipids.

摘要

亨廷顿相互作用蛋白1相关蛋白(Hip1R)是网格蛋白包被小窝和小泡的一种新成分,是酵母中对肌动蛋白组织和胞吞作用都很重要的肌动蛋白结合蛋白Sla2p的哺乳动物同源物。在此,我们证明Hip1R通过其假定的中央卷曲螺旋结构域与网格蛋白结合,并提供证据表明Hip1R和网格蛋白在体内内吞作用位点相关联。首先,对活细胞中Hip1R-YFP和DsRed-网格蛋白轻链(LC)的实时分析表明,这些蛋白在细胞皮层显示出几乎相同的时间和空间调节。其次,在超微结构水平上,对“去顶”细胞的免疫金标记显示Hip1R定位于网格蛋白包被小窝。第三,Hip1R的过表达影响了网格蛋白LC的亚细胞分布。与Hip1R在胞吞作用中的功能作用一致,我们还证明它在体外促进网格蛋白笼组装。最后,我们表明Hip1R是一种杆状的明显二聚体,两端有球状头部,并且它可以将网格蛋白包被小泡和F-肌动蛋白组装成更高阶结构。总之,Hip1R的特性表明其在网格蛋白、F-肌动蛋白和脂质之间的界面处具有早期内吞功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a25f/2150824/05a6a2661da5/0106089f1.jpg

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