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Cks1对泛素连接酶SCF(Skp2)的激活作用:氢交换质谱分析的见解

Activation of ubiquitin ligase SCF(Skp2) by Cks1: insights from hydrogen exchange mass spectrometry.

作者信息

Yao Zhong-Ping, Zhou Min, Kelly Sadie E, Seeliger Markus A, Robinson Carol V, Itzhaki Laura S

机构信息

Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.

出版信息

J Mol Biol. 2006 Oct 27;363(3):673-86. doi: 10.1016/j.jmb.2006.08.032. Epub 2006 Aug 16.

Abstract

Skp2 is the substrate recognition subunit of the multi-subunit ubiquitin ligase SCF(Skp2). It consists of an N-terminal F-box domain that binds to the Skp1 subunit and thereby tethers it to the SCF catalytic core, and an elongated C-terminal domain comprising ten Leucine-rich repeats (LRR) that binds the substrate. A small accessory protein, Cks1, is required for SCF(Skp2) to target certain substrates, including the Cyclin-dependent kinase inhibitor p27. Here we have used hydrogen/deuterium exchange monitored by mass spectrometry to investigate the mode of action of Cks1 on SCF(Skp2). We show that complex formation between Cks1 and Skp2 causes conformational changes in both proteins in regions distant from the respective binding sites. We find that Skp2 interacts with a localised region of Cks1 but the interaction causes a global change in the hydrogen exchange behaviour of Cks1. Also, whilst Cks1 binds to the most C-terminal LRRs of the elongated Skp2 molecule, the interaction induces conformational changes at the distant N-terminal LRRs, close to the F-box motif. Further, binding of Cks1 to Skp2 significantly stabilises the interaction between Skp2 and Skp1. The results reveal that the C-terminal substrate recognition region of Skp2 is coupled to the N-terminal Skp1-binding region and thereby to the SCF catalytic core; this result adds to the model proposed previously that, whilst the principal function of the F-box protein is to recruit the substrate, an additional function may be to help position the substrate in an optimal way within the SCF complex to enable efficient ubiquitin transfer.

摘要

Skp2是多亚基泛素连接酶SCF(Skp2)的底物识别亚基。它由一个N端F-box结构域和一个细长的C端结构域组成,N端F-box结构域与Skp1亚基结合,从而将其与SCF催化核心相连,C端结构域包含十个富含亮氨酸的重复序列(LRR),用于结合底物。一种小的辅助蛋白Cks1是SCF(Skp2)靶向某些底物(包括细胞周期蛋白依赖性激酶抑制剂p27)所必需的。在这里,我们使用质谱监测的氢/氘交换来研究Cks1对SCF(Skp2)的作用模式。我们发现Cks1与Skp2之间的复合物形成会导致这两种蛋白质在远离各自结合位点的区域发生构象变化。我们发现Skp2与Cks1的一个局部区域相互作用,但这种相互作用会导致Cks1的氢交换行为发生全局性变化。此外,虽然Cks1与细长的Skp2分子的最C端LRR结合,但这种相互作用会在靠近F-box基序的远处N端LRR处诱导构象变化。此外,Cks1与Skp2的结合显著稳定了Skp2与Skp1之间的相互作用。结果表明,Skp2的C端底物识别区域与N端Skp1结合区域相连,从而与SCF催化核心相连;这一结果补充了之前提出的模型,即虽然F-box蛋白的主要功能是招募底物,但另一个功能可能是以最佳方式将底物定位在SCF复合物中,以实现有效的泛素转移。

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