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延伸蛋白BC-库林5-SOCS盒泛素蛋白连接酶复合物中亚基间识别的结构基础

Structural basis of intersubunit recognition in elongin BC-cullin 5-SOCS box ubiquitin-protein ligase complexes.

作者信息

Kim Young Kwan, Kwak Mi-Jeong, Ku Bonsu, Suh Hye-Young, Joo Keehyoung, Lee Jooyoung, Jung Jae U, Oh Byung-Ha

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Republic of Korea.

出版信息

Acta Crystallogr D Biol Crystallogr. 2013 Aug;69(Pt 8):1587-97. doi: 10.1107/S0907444913011220. Epub 2013 Jul 20.

Abstract

The cullin-RING ubiquitin ligases are multisubunit complexes that ubiquitinate various proteins. Six different cullins encoded by the human genome selectively pair with different adaptors and substrate receptors. It is presently poorly understood how cullin-2 (Cul2) and cullin-5 (Cul5) associate specifically with their adaptor elongin BC and a SOCS-box-containing substrate receptor. Here, crystallographic and mutational analyses of a quaternary complex between the N-terminal half of Cul5, elongin BC and SOCS2 are reported. Cul5 interacts extensively with elongin BC via residues that are highly conserved in Cul2 but not in other cullins. Cul5 also interacts with SOCS2, but via only two residues, Pro184 and Arg186, which are located in the C-terminal part of the SOCS box called the Cul5 box. Pro184 makes a ring-to-ring interaction with Trp53 of Cul5, which is substituted by alanine in Cul2. This interaction is shown to contribute significantly to the overall binding affinity between Cul5 and SOCS2-elongin BC. This study provides structural bases underlying the specificity of Cul5 and Cul2 for elongin BC and their preferential association with Cul5 or Cul2 box-containing substrate receptors.

摘要

泛素连接酶是一种多亚基复合物,可将泛素连接到各种蛋白质上。人类基因组编码的六种不同的cullin蛋白选择性地与不同的衔接蛋白和底物受体配对。目前,人们对cullin-2(Cul2)和cullin-5(Cul5)如何与它们的衔接蛋白elongin BC和含SOCS盒的底物受体特异性结合知之甚少。在此,我们报道了Cul5 N端一半、elongin BC和SOCS2之间的四元复合物的晶体学和突变分析。Cul5通过在Cul2中高度保守但在其他cullin蛋白中不保守的残基与elongin BC广泛相互作用。Cul5也与SOCS2相互作用,但仅通过位于SOCS盒C端部分(称为Cul5盒)的两个残基Pro184和Arg186。Pro184与Cul5的Trp53形成环与环的相互作用,而在Cul2中该位点被丙氨酸取代。这种相互作用对Cul5与SOCS2-elongin BC之间的整体结合亲和力有显著贡献。这项研究为Cul5和Cul2对elongin BC的特异性以及它们与含Cul5或Cul2盒的底物受体的优先结合提供了结构基础。

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