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Translation termination efficiency modulates ATF4 response by regulating ATF4 mRNA translation at 5′ short ORFs

机译:翻译终止效率通过调节5短ORF处的ATF4 mRNA翻译来调节ATF4反应

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摘要

The activating transcription factor 4 (ATF4) promotes transcriptional upregulation of specific target genes in response to cellular stress. ATF4 expression is regulated at the translational level by two short open reading frames (uORFs) in its 5′-untranslated region (5′-UTR). Here, we describe a mechanism regulating ATF4 expression in translation termination-deficient human cells. Using microarray analysis of total RNA and polysome-associated mRNAs, we show that depletion of the eucaryotic release factor 3a (eRF3a) induces upregulation of ATF4 and of ATF4 target genes. We show that eRF3a depletion modifies ATF4 translational control at regulatory uORFs increasing ATF4 ORF translation. Finally, we show that the increase of REDD1 expression, one of the upregulated targets of ATF4, is responsible for the mTOR pathway inhibition in eRF3a-depleted cells. Our results shed light on the molecular mechanisms connecting eRF3a depletion to mammalian target of rapamycin (mTOR) pathway inhibition and give an example of ATF4 activation that bypasses the signal transduction cascade leading to the phosphorylation of eIF2α. We propose that in mammals, in which the 5′-UTR regulatory elements of ATF4 mRNA are strictly conserved, variations in translation termination efficiency allow the modulation of the ATF4 response.
机译:活化转录因子4(ATF4)响应细胞应激而促进特定靶基因的转录上调。 ATF4的表达受其5'非翻译区(5'-UTR)中的两个短开放阅读框(uORF)的调控。在这里,我们描述了一种在翻译终止缺陷的人类细胞中调节ATF4表达的机制。使用总RNA和多核糖体相关的mRNA的微阵列分析,我们显示真核生物释放因子3a(eRF3a)的消耗诱导ATF4和ATF4目标基因的上调。我们显示,eRF3a耗竭会在增加ATF4 ORF翻译的调节uORF处修饰ATF4翻译控制。最后,我们表明REDD1表达的增加(ATF4的上调靶标之一)是eRF3a缺失细胞中mTOR途径抑制的原因。我们的研究结果揭示了将eRF3a耗竭与哺乳动物雷帕霉素靶标(mTOR)途径抑制联系起来的分子机制,并给出了ATF4激活的一个实例,该激活绕过了导致eIF2α磷酸化的信号转导级联反应。我们提出,在哺乳动物中,ATF4 mRNA的5'-UTR调控元件被严格保守,翻译终止效率的变化允许对ATF4反应的调节。

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