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Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation control

机译:Gemin5二聚化的结构基础及其在蛋白质招生和翻译控制中的作用

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In all organisms, a selected type of proteins accomplishes critical roles in cellular processes that govern gene expression. The multifunctional protein Gemin5 cooperates in translation control and ribosome binding, besides acting as the RNA-binding protein of the survival of motor neuron (SMN) complex. While these functions reside on distinct domains located at each end of the protein, the structure and function of the middle region remained unknown. Here, we solved the crystal structure of an extended tetratricopeptide (TPR)-like domain in human Gemin5 that self-assembles into a previously unknown canoe-shaped dimer. We further show that the dimerization module is functional in living cells driving the interaction between the viral-induced cleavage fragment p85 and the full-length Gemin5, which anchors splicing and translation members. Disruption of the dimerization surface by a point mutation in the TPR-like domain prevents this interaction and also abrogates translation enhancement induced by p85. The characterization of this unanticipated dimerization domain provides the structural basis for a role of the middle region of Gemin5 as a central hub for protein-protein interactions.
机译:在所有生物中,所选类型的蛋白质在治理基因表达的细胞过程中完成关键作用。除了作为运动神经元(SMN)复合物的存活的RNA结合蛋白外,多官能蛋白质Gemin5在翻译控制和核糖体结合中配合。虽然这些功能驻留在位于蛋白质的每一端的不同域,但中间区域的结构和功能仍然未知。在这里,我们在人的双蛋白5中解决了延长的四肽(TPR)麦克风域的晶体结构,将自组装成先前未知的独木舟形二聚体。我们进一步表明,二聚化模块在活细胞中具有驱动病毒诱导的切割片段P85和全长Gemin5之间的相互作用的功能性,该裂缝和翻译成员锚固。通过TPR样结构域中的点突变破坏二聚化表面,防止该相互作用,并且还消除了P85诱导的翻译增强。这种意外的二聚化结构域的表征为Gemin5作为蛋白质 - 蛋白质相互作用的中心枢纽的中间区域的作用提供了结构基础。

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