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Structural insights into the allosteric effects of 4EBP1 on the eukaryotic translation initiation factor eIF4E

机译:对4EBP1对真核翻译起始因子eIF4E的变构作用的结构见解

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The eukaryotic translation initiation factor eIF4E plays key roles in cap-dependent translation and mRNA export. These functions rely on binding the 7-methyl-guanosine moiety (5′cap) on the 5′-end of all mRNAs. eIF4E is regulated by proteins such as eIF4G and eIF4E binding proteins (4EBPs) that bind the dorsal surface of eIF4E, distal to the cap binding site, and modulate cap binding activity. Both proteins increase the affinity of eIF4E for 5′cap. Our understanding of the allosteric effects and structural underpinnings of 4EBP1 or eIF4G binding can be advanced by obtaining structural data on cap-free eIF4E bound to one of these proteins. Here, we report the crystal structure of apo-eIF4E and cap-free eIF4E in complex with a 4EBP1 peptide. We also monitored 4EBP1 binding to cap-free eIF4E in solution using NMR. Together, these studies suggest that 4EBP1 transforms eIF4E into a cap-receptive state. NMR methods were also used to compare the allosteric routes activated by 4EBP1, eIF4G, and the arenavirus Z protein, a negative regulator of cap binding. We observed chemical shift perturbation at the dorsal binding site leading to alterations in the core of the protein, which were ultimately communicated to the unoccupied cap binding site of eIF4E. There were notable similarities between the routes taken by 4EBP1 and eIF4G and differences from the negative regulator Z. Thus, binding of 4EBP1 or eIF4G allosterically drives alterations throughout the protein that increase the affinity of eIF4E for the 5′cap.
机译:真核翻译起始因子eIF4E在依赖帽的翻译和mRNA输出中起关键作用。这些功能依赖于结合所有mRNA 5'端的7-甲基-鸟苷部分(5'cap)。 eIF4E受诸如eIF4G和eIF4E结合蛋白(4EBP)的蛋白调控,这些蛋白与eIF4E的背侧表面结合,位于帽结合位点的远端,并调节帽结合活性。两种蛋白质均增加了eIF4E对5'cap的亲和力。通过获得与这些蛋白质之一结合的无帽eIF4E的结构数据,可以进一步了解4EBP1或eIF4G结合的变构作用和结构基础。在这里,我们报告与4EBP1肽复合的apo-eIF4E和无帽eIF4E的晶体结构。我们还使用NMR监测了溶液中4EBP1与无帽eIF4E的结合。总之,这些研究表明4EBP1将eIF4E转换为帽接受状态。 NMR方法还用于比较由4EBP1,eIF4G和冠状病毒结合的负调节子-沙粒病毒Z蛋白激活的变构途径。我们观察到在背结合位点的化学位移扰动导致蛋白质核心的改变,这些改变最终传达给了eIF4E的空位帽结合位点。 4EBP1和eIF4G所采取的途径之间存在明显的相似之处,并且与负调节剂Z的差异也很明显。因此,4EBP1或eIF4G的结合变构地驱动整个蛋白质的变化,从而增加eIF4E对5'帽的亲和力。

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