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Crystal structure of the DENR-MCT-1 complex revealed zinc-binding site essential for heterodimer formation

机译:DENR-MCT-1配合物的晶体结构揭示了异二聚体形成必不可少的锌结合位点

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摘要

The density-regulated protein (DENR) and the malignant T cell-amplified sequence 1 (MCT-1/MCTS1) oncoprotein support noncanonical translation initiation, promote translation reinitiation on a specific set of mRNAs with short upstream reading frames, and regulate ribosome recycling. DENR and MCT-1 form a heterodimer, which binds to the ribosome. We determined the crystal structure of the heterodimer formed by human MCT-1 and the N-terminal domain of DENR at 2.0-Å resolution. The structure of the heterodimer reveals atomic details of the mechanism of DENR and MCT-1 interaction. Four conserved cysteine residues of DENR (C34, C37, C44, C53) form a classical tetrahedral zinc ion-binding site, which preserves the structure of the DENR’s MCT-1–binding interface that is essential for the dimerization. Substitution of all four cysteines by alanine abolished a heterodimer formation. Our findings elucidate further the mechanism of regulation of DENR-MCT-1 activities in unconventional translation initiation, reinitiation, and recycling.
机译:密度调节蛋白(DENR)和恶性T细胞扩增序列1(MCT-1 / MCTS1)癌蛋白支持非规范翻译起始,通过短的上游阅读框促进特定mRNA上的翻译重新初始化,并调节核糖体回收。 DENR和MCT-1形成异二聚体,与核糖体结合。我们确定了由人MCT-1和DENR N端结构域形成的异二聚体的晶体结构,分辨率为2.0-Å。异二聚体的结构揭示了DENR和MCT-1相互作用机理的原子细节。 DENR的四个保守的半胱氨酸残基(C3​​4,C37,C44,C53)形成经典的四面体锌离子结合位点,保留了DENR的MCT-1结合界面的结构,这对于二聚化至关重要。丙氨酸取代所有四个半胱氨酸消除了异二聚体的形成。我们的发现进一步阐明了非常规翻译起始,重新起始和再循环中DENR-MCT-1活性的调控机制。

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