Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, United States.
Elife. 2018 Oct 3;7:e38892. doi: 10.7554/eLife.38892.
DEAD-box RNA helicase Ded1 is thought to resolve secondary structures in mRNA 5'-untranslated regions (5'-UTRs) that impede 48S preinitiation complex (PIC) formation at the initiation codon. We reconstituted Ded1 acceleration of 48S PIC assembly on native mRNAs in a pure system, and recapitulated increased Ded1-dependence of mRNAs that are Ded1-hyperdependent in vivo. Stem-loop (SL) structures in 5'-UTRs of native and synthetic mRNAs increased the Ded1 requirement to overcome their intrinsically low rates of 48S PIC recruitment. Ded1 acceleration of 48S assembly was greater in the presence of eIF4F, and domains mediating one or more Ded1 interactions with eIF4G or helicase eIF4A were required for efficient recruitment of all mRNAs; however, the relative importance of particular Ded1 and eIF4G domains were distinct for each mRNA. Our results account for the Ded1 hyper-dependence of mRNAs with structure-prone 5'-UTRs, and implicate an eIF4E·eIF4G·eIF4A·Ded1 complex in accelerating 48S PIC assembly on native mRNAs.
DEAD-box RNA 解旋酶 Ded1 被认为可以解决 mRNA 5'-非翻译区(5'-UTR)中阻碍起始密码子处 48S 起始前复合物(PIC)形成的二级结构。我们在纯体系中重新构建了 Ded1 对天然 mRNA 上 48S PIC 组装的加速作用,并再现了体内 Ded1 超依赖的 mRNA 对 Ded1 的依赖性增加。天然和合成 mRNA 5'-UTR 中的茎环(SL)结构增加了 Ded1 克服其内在低 48S PIC 募集率的要求。在 eIF4F 的存在下,Ded1 对 48S 组装的加速作用更大,并且介导 Ded1 与 eIF4G 或解旋酶 eIF4A 之一或多个相互作用的结构对于所有 mRNA 的有效募集都是必需的;然而,对于每种 mRNA,特定 Ded1 和 eIF4G 结构域的相对重要性是不同的。我们的结果解释了具有结构倾向的 5'-UTR 的 mRNA 的 Ded1 超依赖性,并暗示了 eIF4E·eIF4G·eIF4A·Ded1 复合物在加速天然 mRNA 上的 48S PIC 组装。