G-Quadruplex in the NRF2 mRNA 5′ Untranslated Region Regulates De Novo NRF2 Protein Translation under Oxidative Stress

生物 非翻译区 信使核糖核酸 蛋白质生物合成 真核生物翻译延伸因子1α1 五素未翻译区 分子生物学 平动调节 三素数非翻译区 翻译(生物学) RNA结合蛋白 脚印 核糖体 细胞生物学 核糖核酸 生物化学 转录因子 基因
作者
Sang Chul Lee,Jack Zhang,Joshua Strom,Danzhou Yang,Thai Nho Dinh,Kyle V. Kappeler,Qin M. Chen
出处
期刊:Molecular and Cellular Biology [Taylor & Francis]
卷期号:37 (1) 被引量:57
标识
DOI:10.1128/mcb.00122-16
摘要

Inhibition of protein synthesis serves as a general measure of cellular consequences of chemical stress. A few proteins are translated selectively and influence cell fate. How these proteins can bypass the general control of translation remains unknown. We found that low to mild doses of oxidants induce de novo translation of the NRF2 protein. Here we demonstrate the presence of a G-quadruplex structure in the 5' untranslated region (UTR) of NRF2 mRNA, as measured by circular dichroism, nuclear magnetic resonance, and dimethylsulfate footprinting analyses. Such a structure is important for 5'-UTR activity, since its removal by sequence mutation eliminated H2O2-induced activation of the NRF2 5' UTR. Liquid chromatography-tandem mass spectrometry (LC-MS/MS)-based proteomics revealed elongation factor 1 alpha (EF1a) as a protein binding to the G-quadruplex sequence. Cells responded to H2O2 treatment by increasing the EF1a protein association with NRF2 mRNA, as measured by RNA-protein interaction assays. The EF1a interaction with small and large subunits of ribosomes did not appear to change due to H2O2 treatment, nor did posttranslational modifications, as measured by two-dimensional (2-D) Western blot analysis. Since NRF2 encodes a transcription factor essential for protection against tissue injury, our data have revealed a novel mechanism of cellular defense involving de novo NRF2 protein translation governed by the EF1a interaction with the G-quadruplex in the NRF2 5' UTR during oxidative stress.

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