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Vps29具有磷酸酯酶折叠结构,可作为回收体组装的蛋白质相互作用支架。

Vps29 has a phosphoesterase fold that acts as a protein interaction scaffold for retromer assembly.

作者信息

Collins Brett M, Skinner Claire F, Watson Peter J, Seaman Matthew N J, Owen David J

机构信息

Cambridge Institute for Medical Research, Department of Clinical Biochemistry, University of Cambridge, Hills Road, Cambridge CB2 2XY, UK.

出版信息

Nat Struct Mol Biol. 2005 Jul;12(7):594-602. doi: 10.1038/nsmb954. Epub 2005 Jun 19.

Abstract

The retromer complex is responsible for the retrieval of mannose 6-phosphate receptors from the endosomal system to the Golgi. Here we present the crystal structure of the mammalian retromer subunit mVps29 and show that it has structural similarity to divalent metal-containing phosphoesterases. mVps29 can coordinate metals in a similar manner but has no detectable phosphoesterase activity in vitro, suggesting a unique specificity or function. The mVps29 and mVps26 subunits bind independently to mVps35 and together form a high-affinity heterotrimeric subcomplex. Mutagenesis reveals the structural basis for the interaction of mVps29 with mVps35 and subsequent association with endosomal membranes in vivo. A conserved hydrophobic surface distinct from the primary Vps35p binding site mediates assembly of the Vps29p-Vps26p-Vps35p subcomplex with sorting nexins in yeast, and mutation of either site results in a defect in retromer-dependent membrane trafficking.

摘要

回收体复合物负责将甘露糖6-磷酸受体从内体系统转运回高尔基体。在此,我们展示了哺乳动物回收体亚基mVps29的晶体结构,并表明它与含二价金属的磷酸酯酶具有结构相似性。mVps29能够以类似方式结合金属,但在体外没有可检测到的磷酸酯酶活性,这表明其具有独特的特异性或功能。mVps29和mVps26亚基独立结合到mVps35上,并共同形成一个高亲和力的异源三聚体亚复合物。诱变揭示了mVps29与mVps35相互作用以及随后在体内与内体膜结合的结构基础。一个与主要Vps35p结合位点不同的保守疏水表面介导了酵母中Vps29p-Vps26p-Vps35p亚复合物与分选连接蛋白的组装,任一结合位点的突变都会导致回收体依赖性膜运输缺陷。

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