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保守寡聚高尔基体拴系复合物的二元相互作用网络。

The binary interacting network of the conserved oligomeric Golgi tethering complex.

作者信息

Loh Eva, Hong Wanjin

机构信息

Membrane Biology Laboratory, Institute of Molecular and Cell Biology, 30 Medical Dr., Singapore 117609, Singapore.

出版信息

J Biol Chem. 2004 Jun 4;279(23):24640-8. doi: 10.1074/jbc.M400662200. Epub 2004 Mar 26.

Abstract

Several recent studies have revealed the existence of a conserved oligomeric Golgi (COG) complex consisting of several novel proteins as well as known Golgi proteins that were identified by independent approaches. The mammalian COG complex contains eight subunits: COG1/LdlBp, COG2/LdlCp, COG3/Sec34, COG4/Cod1, COG5/GTC-90/Cod4, COG6/Cod2, COG7, and COG8/Dor1. COG1, COG2, and COG7 seem structurally unique to mammalian cells, whereas the other five subunits are structurally conserved in yeast, which also contains three other unique proteins (COG1/Sec36p/Cod3p, COG2/Sec35p, and COG7/Cod5p). We report here the network of intermolecular interactions of the COG complex, revealed by in vitro translation and co-immunoprecipitation approaches. Our results suggest that COG4 serves as a core component of the complex by interacting directly with COG1, COG2, COG5, and COG7. COG3 is incorporated by its direct interaction with COG1 and COG2, whereas COG6 and COG8 do not interact with any individual subunit. Incorporation of COG6 into the complex depends on the concerted interaction of both COG5 and COG7, whereas optimal incorporation of COG8 depends on the concerted interaction of COG5, COG6, and COG7. Because COG4 (together with COG1, COG2, and COG3) is among the four essential genes of the COG complex in yeast, this molecular network highlights the structural basis for a crucial role of COG4 in the assembly/function of the complex. A model for the assembly of the COG complex is presented.

摘要

最近的几项研究揭示了一种保守的寡聚高尔基体(COG)复合体的存在,该复合体由几种新蛋白以及通过独立方法鉴定出的已知高尔基体蛋白组成。哺乳动物的COG复合体包含八个亚基:COG1/LdlBp、COG2/LdlCp、COG3/Sec34、COG4/Cod1、COG5/GTC-90/Cod4、COG6/Cod2、COG7和COG8/Dor1。COG1、COG2和COG7在结构上似乎是哺乳动物细胞所特有的,而其他五个亚基在酵母中结构保守,酵母中还包含另外三种独特的蛋白(COG1/Sec36p/Cod3p、COG2/Sec35p和COG7/Cod5p)。我们在此报告通过体外翻译和共免疫沉淀方法揭示的COG复合体分子间相互作用网络。我们的结果表明,COG4通过直接与COG1、COG2、COG5和COG7相互作用,作为复合体的核心成分。COG3通过与COG1和COG2的直接相互作用而被整合,而COG6和COG8不与任何单个亚基相互作用。COG6整合到复合体中取决于COG5和COG7的协同相互作用,而COG8的最佳整合取决于COG5、COG6和COG7的协同相互作用。由于COG4(连同COG1、COG2和COG3)是酵母中COG复合体的四个必需基因之一,这个分子网络突出了COG4在复合体组装/功能中起关键作用的结构基础。本文还提出了COG复合体的组装模型。

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