Department of Molecular and Cellular Biology, University of Arizona, Tucson, Tucson, AZ 85721.
Mol Biol Cell. 2019 Aug 1;30(17):2171-2184. doi: 10.1091/mbc.E18-11-0702. Epub 2019 May 29.
Ded1 is a DEAD-box RNA helicase with essential roles in translation initiation. It binds to the eukaryotic initiation factor 4F (eIF4F) complex and promotes 48S preinitiation complex assembly and start-site scanning of 5' untranslated regions of mRNAs. Most prior studies of Ded1 cellular function were conducted in steady-state conditions during nutrient-rich growth. In this work, however, we examine its role in the translational response during target of rapamycin (TOR)C1 inhibition and identify a novel function of Ded1 as a translation repressor. We show that C-terminal mutants of are defective in down-regulating translation following TORC1 inhibition using rapamycin. Furthermore, following TORC1 inhibition, eIF4G1 normally dissociates from translation complexes and is degraded, and this process is attenuated in mutant cells. Mapping of the functional requirements for Ded1 in this translational response indicates that Ded1 enzymatic activity and interaction with eIF4G1 are required, while homo-oligomerization may be dispensable. Our results are consistent with a model wherein Ded1 stalls translation and specifically removes eIF4G1 from translation preinitiation complexes, thus removing eIF4G1 from the translating mRNA pool and leading to the codegradation of both proteins. Shared features among orthologues suggest that this role is conserved and may be implicated in pathologies such as oncogenesis.
Ded1 是一种 DEAD 框 RNA 解旋酶,在翻译起始中具有重要作用。它与真核起始因子 4F(eIF4F)复合物结合,促进 48S 起始前复合物的组装和 mRNA5'非翻译区的起始位点扫描。先前对 Ded1 细胞功能的大多数研究都是在营养丰富的生长过程中的稳定状态下进行的。然而,在这项工作中,我们研究了它在雷帕霉素(TOR)C1 抑制时的翻译反应中的作用,并确定了 Ded1 作为翻译抑制剂的新功能。我们表明,使用雷帕霉素,的 C 端突变体在 TORC1 抑制后下调翻译的能力有缺陷。此外,在 TORC1 抑制后,eIF4G1 通常从翻译复合物中解离并降解,而在突变细胞中,这个过程被减弱。对 Ded1 在这种翻译反应中的功能要求进行作图表明,Ded1 的酶活性和与 eIF4G1 的相互作用是必需的,而同源寡聚化可能是可有可无的。我们的结果与这样一种模型一致,即 Ded1 使翻译停滞,并专门将 eIF4G1 从翻译起始复合物中去除,从而将 eIF4G1 从正在翻译的 mRNA 池中去除,并导致两种蛋白质的共降解。与 Ded1 同源物的共同特征表明,这种作用是保守的,可能与癌症等病理学有关。