Department of Chemistry and Biochemistry, University of Lethbridge, 4401 University Drive W, Lethbridge, AB T1K 3M4, Canada.
Canadian Centre for Behavioral Neuroscience (CCBN), Department of Neuroscience, University of Lethbridge, 4401 University Drive W, Lethbridge, AB T1K 3M4, Canada.
Int J Mol Sci. 2018 Dec 13;19(12):4032. doi: 10.3390/ijms19124032.
A variety of cellular stresses lead to global translation attenuation due to phosphorylation of the alpha subunit of eukaryotic initiation factor 2 (eIF2), which decreases the availability of the eIF2-GTP-Met-tRNA ternary complex. However, a subset of mRNAs continues to be translated by non-canonical mechanisms under these conditions. In fact, although translation initiation of activating transcription factor 4 (ATF4) is normally repressed by an upstream open reading frame (uORF), a decreased availability of ternary complex leads to increased translation of the main ATF4-coding ORF. We show here that siRNA-mediated depletion of eIF5B-which can substitute for eIF2 in delivering Met-tRNA-leads to increased levels of ATF4 protein in mammalian cells. This de-repression is not due to phosphorylation of eIF2α under conditions of eIF5B depletion. Although eIF5B depletion leads to a modest increase in the steady-state levels of mRNA, we show by polysome profiling that the depletion of eIF5B enhances ATF4 expression primarily at the level of translation. Moreover, eIF5B silencing increases the expression of an ATF4-luciferase translational reporter by a mechanism requiring the repressive uORF2. Further experiments suggest that eIF5B cooperates with eIF1A and eIF5, but not eIF2A, to facilitate the uORF2-mediated repression of ATF4 translation.
多种细胞应激会导致真核起始因子 2(eIF2)的α亚基磷酸化,从而导致全局翻译衰减,降低 eIF2-GTP-Met-tRNA 三元复合物的可用性。然而,在这些条件下,一部分 mRNA 仍然通过非典型机制进行翻译。事实上,尽管激活转录因子 4(ATF4)的翻译起始通常受到上游开放阅读框(uORF)的抑制,但三元复合物可用性的降低会导致主要 ATF4 编码 ORF 的翻译增加。我们在这里表明,siRNA 介导的 eIF5B 耗竭——它可以替代 eIF2 来递 Met-tRNA——会导致哺乳动物细胞中 ATF4 蛋白水平升高。在 eIF5B 耗竭的条件下,这种去阻遏不是由于 eIF2α 的磷酸化。尽管 eIF5B 耗竭会导致 mRNA 的稳态水平适度增加,但我们通过多核糖体谱分析表明,eIF5B 耗竭主要在翻译水平上增强 ATF4 的表达。此外,eIF5B 沉默通过需要抑制性 uORF2 的机制增加了 ATF4-荧光素酶翻译报告基因的表达。进一步的实验表明,eIF5B 与 eIF1A 和 eIF5 合作,但不与 eIF2A 合作,以促进 uORF2 介导的 ATF4 翻译抑制。