Zhou Fujun, Bocetti Julie M, Hou Meizhen, Qin Daoming, Hinnebusch Alan G, Lorsch Jon R
Section on the Mechanism and Regulation of Protein Synthesis, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD USA.
Section on Nutrient Control of Gene Expression, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD USA.
bioRxiv. 2024 Feb 5:2023.10.16.562452. doi: 10.1101/2023.10.16.562452.
We have developed a deep sequencing-based approach, Rec-Seq, that allows simultaneous monitoring of ribosomal 48S pre-initiation complex (PIC) formation on every mRNA in the translatome in an in vitro reconstituted system. Rec-Seq isolates key early steps in translation initiation in the absence of all other cellular components and processes. Using this approach we show that the DEAD-box ATPase Ded1 promotes 48S PIC formation on the start codons of >1000 native mRNAs, most of which have long, structured 5'-untranslated regions (5'UTRs). Remarkably, initiation measured in Rec-Seq was enhanced by Ded1 for most mRNAs previously shown to be highly Ded1-dependent by ribosome profiling of mutants in vivo, demonstrating that the core translation functions of the factor are recapitulated in the purified system. Our data do not support a model in which Ded1acts by reducing initiation at alternative start codons in 5'UTRs and instead indicate it functions by directly promoting mRNA recruitment to the 43S PIC and scanning to locate the main start codon. We also provide evidence that eIF4A, another essential DEAD-box initiation factor, is required for efficient PIC assembly on almost all mRNAs, regardless of their structural complexity, in contrast to the preferential stimulation by Ded1 of initiation on mRNAs with long, structured 5'UTRs.
我们开发了一种基于深度测序的方法——Rec-Seq,该方法能够在体外重组系统中同时监测翻译组中每个mRNA上核糖体48S起始前复合物(PIC)的形成。Rec-Seq在不存在所有其他细胞成分和过程的情况下分离出翻译起始的关键早期步骤。使用这种方法,我们发现DEAD-box ATP酶Ded1可促进1000多个天然mRNA起始密码子上48S PIC的形成,其中大多数mRNA具有长的、结构化的5'非翻译区(5'UTR)。值得注意的是,对于之前在体内通过核糖体谱分析显示高度依赖Ded1的大多数mRNA,Rec-Seq中测得的起始作用因Ded1而增强,这表明该因子的核心翻译功能在纯化系统中得以重现。我们的数据不支持Ded1通过减少5'UTR中替代起始密码子处的起始作用来发挥作用的模型,而是表明它通过直接促进mRNA募集到43S PIC并扫描以定位主要起始密码子来发挥作用。我们还提供了证据表明,另一种必需的DEAD-box起始因子eIF4A对于几乎所有mRNA上高效的PIC组装都是必需的,无论其结构复杂性如何,这与Ded1优先刺激具有长的、结构化5'UTR的mRNA的起始作用形成对比。