Laboratory on the Mechanism and Regulation of Protein Synthesis, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, United States.
Laboratory of Regulation of Gene Expression, Institute of Microbiology ASCR, Prague, Czech Republic.
Elife. 2016 Oct 26;5:e20934. doi: 10.7554/eLife.20934.
Eukaryotic translation initiation factor 3 (eIF3) is a central player in recruitment of the pre-initiation complex (PIC) to mRNA. We probed the effects on mRNA recruitment of a library of eIF3 functional variants spanning its 5 essential subunits using an in vitro-reconstituted system. Mutations throughout eIF3 disrupt its interaction with the PIC and diminish its ability to accelerate recruitment to a native yeast mRNA. Alterations to the eIF3a CTD and eIF3b/i/g significantly slow mRNA recruitment, and mutations within eIF3b/i/g destabilize eIF2•GTP•Met-tRNA binding to the PIC. Using model mRNAs lacking contacts with the 40S entry or exit channels, we uncovered a critical role for eIF3 requiring the eIF3a NTD, in stabilizing mRNA interactions at the exit channel, and an ancillary role at the entry channel requiring residues of the eIF3a CTD. These functions are redundant: defects at each channel can be rescued by filling the other channel with mRNA.
真核翻译起始因子 3(eIF3)是募集起始前复合物(PIC)到 mRNA 的核心分子。我们利用体外重建的系统,研究了 eIF3 的 5 个必需亚基的 eIF3 功能变体文库对 mRNA 募集的影响。eIF3 中的突变会破坏其与 PIC 的相互作用,并降低其加速募集到天然酵母 mRNA 的能力。eIF3a CTD 和 eIF3b/i/g 的改变显著减缓了 mRNA 的募集,而 eIF3b/i/g 内的突变会使 eIF2•GTP•Met-tRNA 与 PIC 的结合不稳定。使用缺乏与 40S 进入或出口通道接触的模型 mRNA,我们揭示了 eIF3 的一个关键作用,该作用需要 eIF3a NTD,以稳定出口通道处的 mRNA 相互作用,并在需要 eIF3a CTD 残基的入口通道处发挥辅助作用。这些功能是冗余的:每个通道的缺陷都可以通过用 mRNA 填充另一个通道来挽救。