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Toward the mechanism of eIF4F-mediated ribosomal attachment to mammalian capped mRNAs

机译:探讨eIF4F介导的核糖体附着于哺乳动物带帽mRNA的机制

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摘要

Ribosomal attachment to mammalian capped mRNAs is achieved through the cap–eukaryotic initiation factor 4E (eIF4E)–eIF4G–eIF3–40S chain of interactions, but the mechanism by which mRNA enters the mRNA-binding channel of the 40S subunit remains unknown. To investigate this process, we recapitulated initiation on capped mRNAs in vitro using a reconstituted translation system. Formation of initiation complexes at 5′-terminal AUGs was stimulated by the eIF4E–cap interaction and followed “the first AUG” rule, indicating that it did not occur by backward scanning. Initiation complexes formed even at the very 5′ end of mRNA, implying that Met-tRNAiMet inspects mRNA from the first nucleotide and that initiation does not have a “blind spot.” In assembled initiation complexes, the cap was no longer associated with eIF4E. Omission of eIF4A or disruption of eIF4E–eIF4G–eIF3 interactions converted eIF4E into a specific inhibitor of initiation on capped mRNAs. Taken together, these results are consistent with the model in which eIF4E–eIF4G–eIF3–40S interactions place eIF4E at the leading edge of the 40S subunit, and mRNA is threaded into the mRNA-binding channel such that Met-tRNAiMet can inspect it from the first nucleotide. Before entering, eIF4E likely dissociates from the cap to overcome steric hindrance. We also found that the m7G cap specifically interacts with eIF3l.
机译:核糖体对哺乳动物加帽的mRNA的附着是通过cap-真核起始因子4E(eIF4E)-eIF4G-eIF3-40S的相互作用链实现的,但mRNA进入40S亚基的mRNA结合通道的机制尚不清楚。为了研究此过程,我们使用重组翻译系统在体外概括了加帽的mRNA的起始。 eIF4E-cap相互作用刺激了5'-末端AUGs起始复合物的形成,并遵循“第一个AUG”规则,这表明反向扫描并未发生这种情况。起始复合物甚至在mRNA的5'端形成,这意味着Met-tRNAi Met 检查第一个核苷酸的mRNA,并且起始没有“盲点”。在组装的起始复合物中,该帽不再与eIF4E相关。 eIF4A的缺失或eIF4E–eIF4G–eIF3相互作用的破坏将eIF4E转化为特定的带帽mRNA起始抑制剂。两者合计,这些结果与模型一致,在模型中,eIF4E–eIF4G–eIF3–40S相互作用将eIF4E置于40S亚基的前沿,并且mRNA被穿入mRNA结合通道,从而使Met-tRNAi Met 可以从第一个核苷酸检查它。在进入之前,eIF4E可能会从帽解离以克服空间位阻。我们还发现,m 7 G cap与eIF3l特异性相互作用。

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