Laboratory of Gene Regulation and Development, Eunice K. Shriver NICHD, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2013 Jan 25;288(4):2340-54. doi: 10.1074/jbc.M112.398537. Epub 2012 Nov 26.
Translation initiation factor eIF4F (eukaryotic initiation factor 4F), composed of eIF4E, eIF4G, and eIF4A, binds to the m(7)G cap structure of mRNA and stimulates recruitment of the 43S preinitiation complex and subsequent scanning to the initiation codon. The HEAT domain of eIF4G stabilizes the active conformation of eIF4A required for its RNA helicase activity. Mammalian eIF4B also stimulates eIF4A activity, but this function appears to be lacking in yeast, making it unclear how yeast eIF4B (yeIF4B/Tif3) stimulates translation. We identified Ts(-) mutations in the HEAT domains of yeast eIF4G1 and eIF4G2 that are suppressed by overexpressing either yeIF4B or eIF4A, whereas others are suppressed only by eIF4A overexpression. Importantly, suppression of HEAT domain substitutions by yeIF4B overexpression was correlated with the restoration of native eIF4A·eIF4G complexes in vivo, and the rescue of specific mutant eIF4A·eIF4G complexes by yeIF4B was reconstituted in vitro. Association of eIF4A with WT eIF4G in vivo also was enhanced by yeIF4B overexpression and was impaired in cells lacking yeIF4B. Furthermore, we detected native complexes containing eIF4G and yeIF4B but lacking eIF4A. These and other findings lead us to propose that yeIF4B acts in vivo to promote eIF4F assembly by enhancing a conformation of the HEAT domain of yeast eIF4G conducive for stable binding to eIF4A.
翻译起始因子 eIF4F(真核起始因子 4F)由 eIF4E、eIF4G 和 eIF4A 组成,结合 mRNA 的 m(7)G 帽结构,刺激 43S 起始前复合物的募集和随后的扫描到起始密码子。eIF4G 的 HEAT 结构域稳定了 eIF4A 的活性构象,这对于其 RNA 解旋酶活性是必需的。哺乳动物 eIF4B 也刺激 eIF4A 活性,但在酵母中似乎缺乏这种功能,这使得酵母 eIF4B(yeIF4B/Tif3)如何刺激翻译不清楚。我们鉴定了酵母 eIF4G1 和 eIF4G2 的 HEAT 结构域中的 Ts(-)突变,这些突变可以被过表达 yeIF4B 或 eIF4A 所抑制,而其他突变只能被 eIF4A 过表达所抑制。重要的是,yeIF4B 过表达对 HEAT 结构域取代的抑制与体内恢复天然 eIF4A·eIF4G 复合物相关,yeIF4B 对特定突变 eIF4A·eIF4G 复合物的拯救在体外得到重建。yeIF4B 过表达增强了体内 WT eIF4G 与 eIF4A 的结合,而在缺乏 yeIF4B 的细胞中则受到损害。此外,我们还检测到含有 eIF4G 和 yeIF4B 但缺乏 eIF4A 的天然复合物。这些和其他发现使我们提出,yeIF4B 在体内通过增强酵母 eIF4G 的 HEAT 结构域的一种构象,促进 eIF4F 组装,从而发挥作用,这种构象有利于与 eIF4A 的稳定结合。