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多聚(U)特异性内切核糖核酸酶 ENDOU 通过释放 uORF 元件介导的抑制作用促进人 CHOP mRNA 的翻译。

Poly(U)-specific endoribonuclease ENDOU promotes translation of human CHOP mRNA by releasing uORF element-mediated inhibition.

机构信息

Institute of Biomedical Sciences, Mackay Medical College, New Taipei City, Taiwan.

Institute of Molecular and Cellular Biology, National Taiwan University, Taipei, Taiwan.

出版信息

EMBO J. 2021 Jun 1;40(11):e104123. doi: 10.15252/embj.2019104123. Epub 2021 Jan 28.

Abstract

Upstream open reading frames (uORFs) are known to negatively affect translation of the downstream ORF. The regulatory proteins involved in relieving this inhibition are however poorly characterized. In response to cellular stress, eIF2α phosphorylation leads to an inhibition of global protein synthesis, while translation of specific factors such as CHOP is induced. We analyzed a 105-nt inhibitory uORF in the transcript of human CHOP (huORF ) and found that overexpression of the zebrafish or human ENDOU poly(U)-endoribonuclease (Endouc or ENDOU-1, respectively) increases CHOP mRNA translation also in the absence of stress. We also found that Endouc/ENDOU-1 binds and cleaves the huORF transcript at position 80G-81U, which induces CHOP translation independently of phosphorylated eIF2α. However, both ENDOU and phospho-eIF2α are nonetheless required for maximal translation of CHOP mRNA. Increased levels of ENDOU shift a huORF reporter as well as endogenous CHOP transcripts from the monosome to polysome fraction, indicating an increase in translation. Furthermore, we found that the uncapped truncated huORF -69-105-nt transcript contains an internal ribosome entry site (IRES), facilitating translation of the cleaved transcript. Therefore, we propose a model where ENDOU-mediated transcript cleavage positively regulates CHOP translation resulting in increased CHOP protein levels upon stress. Specifically, CHOP transcript cleavage changes the configuration of huORF thereby releasing its inhibition and allowing the stalled ribosomes to resume translation of the downstream ORF.

摘要

上游开放阅读框(uORFs)已知会对下游 ORF 的翻译产生负面影响。然而,参与缓解这种抑制作用的调节蛋白的特征描述却很差。在细胞应激响应中,eIF2α 的磷酸化会导致全局蛋白质合成的抑制,而特定因子(如 CHOP)的翻译则会被诱导。我们分析了人类 CHOP 转录本中的一个 105nt 的抑制性 uORF(huORF),发现斑马鱼或人类 ENDOU 聚(U)-内切核酸酶(分别为 Endouc 或 ENDOU-1)的过表达也会增加 CHOP mRNA 的翻译,即使在没有应激的情况下也是如此。我们还发现,Endouc/ENDOU-1 在位置 80G-81U 处结合并切割 huORF 转录本,这会独立于磷酸化的 eIF2α 诱导 CHOP 翻译。然而,ENDOU 和磷酸化的 eIF2α 都需要最大程度地翻译 CHOP mRNA。ENDOU 水平的升高会将 huORF 报告基因和内源性 CHOP 转录本从单体转移到多核糖体部分,表明翻译增加。此外,我们发现无帽截断的 huORF-69-105nt 转录本含有内部核糖体进入位点(IRES),从而促进了切割转录本的翻译。因此,我们提出了一个模型,其中 ENDOU 介导的转录本切割正向调节 CHOP 翻译,从而在应激时增加 CHOP 蛋白水平。具体而言,CHOP 转录本切割改变了 huORF 的构象,从而释放了其抑制作用,并允许停滞的核糖体恢复下游 ORF 的翻译。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa8b/8167367/fafbfef9a283/EMBJ-40-e104123-g011.jpg

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