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eIF1A/eIF5B interaction network and its functions in translation initiation complex assembly and remodeling

机译:eIF1A / eIF5B交互网络及其在翻译起始复杂组装和重塑中的功能

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摘要

Eukaryotic translation initiation is a highly regulated process involving multiple steps, from 43S pre-initiation complex (PIC) assembly, to ribosomal subunit joining. Subunit joining is controlled by the G-protein eukaryotic translation initiation factor 5B (eIF5B). Another protein, eIF1A, is involved in virtually all steps, including subunit joining. The intrinsically disordered eIF1A C-terminal tail (eIF1A-CTT) binds to eIF5B Domain-4 (eIF5B-D4). The ribosomal complex undergoes conformational rearrangements at every step of translation initiation; however, the underlying molecular mechanisms are poorly understood. Here we report three novel interactions involving eIF5B and eIF1A: (i) a second binding interface between eIF5B and eIF1A; (ii) a dynamic intramolecular interaction in eIF1A between the folded domain and eIF1A-CTT; and (iii) an intramolecular interaction between eIF5B-D3 and -D4. The intramolecular interactions within eIF1A and eIF5B interfere with one or both eIF5B/eIF1A contact interfaces, but are disrupted on the ribosome at different stages of translation initiation. Therefore, our results indicate that the interactions between eIF1A and eIF5B are being continuously rearranged during translation initiation. We present a model how the dynamic eIF1A/eIF5B interaction network can promote remodeling of the translation initiation complexes, and the roles in the process played by intrinsically disordered protein segments.
机译:真核翻译起始是一个高度受控的过程,涉及多个步骤,从43S预起始复合物(PIC)组装到核糖体亚基连接。亚基连接受G蛋白真核翻译起始因子5B(eIF5B)的控制。另一个蛋白质eIF1A实际上参与了所有步骤,包括亚基连接。本质上无序的eIF1A C末端尾巴(eIF1A-CTT)与eIF5B Domain-4(eIF5B-D4)结合。核糖体复合物在翻译起始的每个步骤均经历构象重排;然而,人们对潜在的分子机制了解甚少。在这里,我们报告了涉及eIF5B和eIF1A的三种新颖的相互作用:(i)eIF5B和eIF1A之间的第二个结合界面; (ii)eIF1A在折叠域和eIF1A-CTT之间的动态分子内相互作用; (iii)eIF5B-D3和-D4之间的分子内相互作用。 eIF1A和eIF5B内的分子内相互作用会干扰一个或两个eIF5B / eIF1A接触界面,但在翻译起始的不同阶段会在核糖体上被破坏。因此,我们的结果表明eIF1A和eIF5B之间的相互作用在翻译起始过程中正在不断重新排列。我们提出了一个模型,该动态eIF1A / eIF5B相互作用网络如何促进翻译起始复合物的重塑,以及在本质上无序的蛋白质片段发挥作用的过程中的作用。

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