Binding of human Cdc123 to eIF2γ

IF 3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Cristina Cardenal Peralta , Paul Vandroux , Lea Neumann-Arnold , Michel Panvert , Jérôme Fagart , Wolfgang Seufert , Yves Mechulam , Emmanuelle Schmitt
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Abstract

Eukaryotic initiation factor 2 (eIF2) plays a key role in protein synthesis and in its regulation. The assembly of this heterotrimeric factor is facilitated by Cdc123, a member of the ATP grasp family that binds the γ subunit of eIF2. Notably, some mutations related to MEHMO syndrome, an X-linked intellectual disability, affect Cdc123-mediated eIF2 assembly. The mechanism of action of Cdc123 is unclear and structural information for the human protein is awaited. Here, the crystallographic structure of human Cdc123 (Hs-Cdc123) bound to domain 3 of human eIF2γ (Hs-eIF2γD3) was determined. The structure shows that the domain 3 of eIF2γ is bound to domain 1 of Cdc123. In addition, the long C-terminal region of Hs-Cdc123 provides a link between the ATP and Hs-eIF2γD3 binding sites. A thermal shift assay shows that ATP is tightly bound to Cdc123 whereas the affinity of ADP is much smaller. Yeast cell viability experiments, western blot analysis and two-hybrid assays show that ATP is important for the function of Hs-Cdc123 in eIF2 assembly. These data and recent findings allow us to propose a refined model to explain the mechanism of action of Cdc123 in eIF2 assembly.

Abstract Image

人Cdc123与eIF2γ的结合
真核起始因子2(eIF2)在蛋白质合成及其调控中起着关键作用。Cdc123促进了这种异源三聚体因子的组装,Cdc123是结合eIF2γ亚基的ATP抓握家族的成员。值得注意的是,一些与X连锁智力残疾MEHMO综合征相关的突变会影响Cdc123介导的eIF2组装。Cdc123的作用机制尚不清楚,目前正在等待人类蛋白质的结构信息。在此,测定了与人eIF2γ(Hs-eIF2γD3)的结构域3结合的人Cdc123(Hs-Cdc123)的晶体结构。结构表明eIF2γ的结构域3与Cdc123的结构域1结合。此外,Hs-Cdc123的长C末端区域提供了ATP和Hs-eIF2γD3结合位点之间的连接。热位移测定显示ATP与Cdc123紧密结合,而ADP的亲和力要小得多。酵母细胞活力实验、蛋白质印迹分析和两种杂交分析表明,ATP对Hs-Cdc123在eIF2组装中的功能很重要。这些数据和最近的发现使我们能够提出一个精细的模型来解释Cdc123在eIF2组装中的作用机制。
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来源期刊
Journal of structural biology
Journal of structural biology 生物-生化与分子生物学
CiteScore
6.30
自引率
3.30%
发文量
88
审稿时长
65 days
期刊介绍: Journal of Structural Biology (JSB) has an open access mirror journal, the Journal of Structural Biology: X (JSBX), sharing the same aims and scope, editorial team, submission system and rigorous peer review. Since both journals share the same editorial system, you may submit your manuscript via either journal homepage. You will be prompted during submission (and revision) to choose in which to publish your article. The editors and reviewers are not aware of the choice you made until the article has been published online. JSB and JSBX publish papers dealing with the structural analysis of living material at every level of organization by all methods that lead to an understanding of biological function in terms of molecular and supermolecular structure. Techniques covered include: • Light microscopy including confocal microscopy • All types of electron microscopy • X-ray diffraction • Nuclear magnetic resonance • Scanning force microscopy, scanning probe microscopy, and tunneling microscopy • Digital image processing • Computational insights into structure
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