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亨廷顿相互作用蛋白1(Hip1)和亨廷顿相互作用蛋白1相关蛋白(Hip1R)结合网格蛋白轻链的保守序列,从而在体外影响网格蛋白组装,在体内影响肌动蛋白分布。

Huntingtin-interacting protein 1 (Hip1) and Hip1-related protein (Hip1R) bind the conserved sequence of clathrin light chains and thereby influence clathrin assembly in vitro and actin distribution in vivo.

作者信息

Chen Chih-Ying, Brodsky Frances M

机构信息

G. W. Hooper Foundation, Department of Biopharmaceutical Sciences, University of California, San Francisco, CA 94143-0552, USA.

出版信息

J Biol Chem. 2005 Feb 18;280(7):6109-17. doi: 10.1074/jbc.M408454200. Epub 2004 Nov 8.

Abstract

Clathrin heavy and light chains form triskelia, which assemble into polyhedral coats of membrane vesicles that mediate transport for endocytosis and organelle biogenesis. Light chain subunits regulate clathrin assembly in vitro by suppressing spontaneous self-assembly of the heavy chains. The residues that play this regulatory role are at the N terminus of a conserved 22-amino acid sequence that is shared by all vertebrate light chains. Here we show that these regulatory residues and others in the conserved sequence mediate light chain interaction with Hip1 and Hip1R. These related proteins were previously found to be enriched in clathrin-coated vesicles and to promote clathrin assembly in vitro. We demonstrate Hip1R binding preference for light chains associated with clathrin heavy chain and show that Hip1R stimulation of clathrin assembly in vitro is blocked by mutations in the conserved sequence of light chains that abolish interaction with Hip1 and Hip1R. In vivo overexpression of a fragment of clathrin light chain comprising the Hip1R-binding region affected cellular actin distribution. Together these results suggest that the roles of Hip1 and Hip1R in affecting clathrin assembly and actin distribution are mediated by their interaction with the conserved sequence of clathrin light chains.

摘要

网格蛋白重链和轻链形成三脚蛋白复合体,其组装成膜泡的多面体包被,介导内吞作用和细胞器生物发生的运输。轻链亚基在体外通过抑制重链的自发自组装来调节网格蛋白组装。发挥这种调节作用的残基位于所有脊椎动物轻链共有的保守22个氨基酸序列的N端。在这里,我们表明这些调节性残基以及保守序列中的其他残基介导轻链与Hip1和Hip1R的相互作用。先前发现这些相关蛋白在网格蛋白包被的小泡中富集,并在体外促进网格蛋白组装。我们证明Hip1R对与网格蛋白重链相关的轻链具有结合偏好,并表明在体外Hip1R对网格蛋白组装的刺激被轻链保守序列中的突变所阻断,这些突变消除了与Hip1和Hip1R的相互作用。在体内过表达包含Hip1R结合区域的网格蛋白轻链片段会影响细胞肌动蛋白分布。这些结果共同表明,Hip1和Hip1R在影响网格蛋白组装和肌动蛋白分布中的作用是通过它们与网格蛋白轻链保守序列的相互作用来介导的。

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