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PNAS Plus: Structure of the eukaryotic translation initiation factor eIF4E in complex with 4EGI-1 reveals an allosteric mechanism for dissociating eIF4G

机译:PNAS Plus:与4EGI-1结合的真核翻译起始因子eIF4E的结构揭示了解离eIF4G的变构机制

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摘要

The interaction of the eukaryotic translation initiation factor eIF4E with the initiation factor eIF4G recruits the 40S ribosomal particle to the 5′ end of mRNAs, facilitates scanning to the AUG start codon, and is crucial for eukaryotic translation of nearly all genes. Efficient recruitment of the 40S particle is particularly important for translation of mRNAs encoding oncoproteins and growth-promoting factors, which often harbor complex 5′ UTRs and require efficient initiation. Thus, inhibiting the eIF4E/eIF4G interaction has emerged as a previously unpursued route for developing anticancer agents. Indeed, we discovered small-molecule inhibitors of this eIF4E/eIF4G interaction (4EGIs) that inhibit translation initiation both in vitro and in vivo and were used successfully in numerous cancer–biology and neurobiology studies. However, their detailed molecular mechanism of action has remained elusive. Here, we show that the eIF4E/eIF4G inhibitor 4EGI-1 acts allosterically by binding to a site on eIF4E distant from the eIF4G binding epitope. Data from NMR mapping and high-resolution crystal structures are congruent with this mechanism, where 4EGI-1 attaches to a hydrophobic pocket of eIF4E between β-sheet2 (L60-T68) and α-helix1 (E69-N77), causing localized conformational changes mainly in the H78-L85 region. It acts by unfolding a short 310-helix (S82-L85) while extending α-helix1 by one turn (H78-S82). This unusual helix rearrangement has not been seen in any previous eIF4E structure and reveals elements of an allosteric inhibition mechanism leading to the dislocation of eIF4G from eIF4E.
机译:真核翻译起始因子eIF4E与起始因子eIF4G的相互作用将40S核糖体颗粒募集到mRNA的5'端,有助于扫描到AUG起始密码子,并且对于几乎所有基因的真核翻译都是至关重要的。 40S颗粒的有效募集对于编码癌蛋白和生长促进因子的mRNA的翻译尤其重要,后者通常带有复杂的5'UTR,需要有效的启动。因此,抑制eIF4E / eIF4G相互作用已成为开发抗癌药物的先前未曾追求的途径。确实,我们发现了这种eIF4E / eIF4G相互作用的小分子抑制剂(4EGI),在体外和体内均抑制翻译起始,并成功用于许多癌症,生物学和神经生物学研究。然而,它们的详细分子作用机理仍然难以捉摸。在这里,我们显示eIF4E / eIF4G抑制剂4EGI-1通过与eIF4E上远离eIF4G结合表位的位点结合而变构作用。来自NMR绘图和高分辨率晶体结构的数据与此机制一致,其中4EGI-1附着在β-sheet2(L60-T68)和α-helix1(E69-N77)之间的eIF4E疏水口袋上,导致局部构象变化主要在H78-L85地区。它通过展开短的310螺旋(S82-L85),同时将α-螺旋1延长一圈(H78-S82)来发挥作用。这种异常的螺旋重排在任何先前的eIF4E结构中均未见,并揭示了导致eIF4G从eIF4E脱位的变构抑制机制的元素。

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