Literature DB >> 30419262

A novel uORF-based regulatory mechanism controls translation of the human MDM2 and eIF2D mRNAs during stress.

Kseniya A Akulich1, Pavel G Sinitcyn2, Desislava S Makeeva1, Dmitry E Andreev3, Ilya M Terenin4, Aleksandra S Anisimova1, Ivan N Shatsky3, Sergey E Dmitriev5.   

Abstract

Short upstream open reading frames (uORFs) are the most prevalent cis-acting regulatory elements in the mammalian transcriptome which can orchestrate mRNA translation. Apart from being "passive roadblocks" that decrease expression of the main coding regions, particular uORFs can serve as specific sensors for changing conditions, thus regulating translation in response to cell stress. Here we report a novel uORF-based regulatory mechanism that is employed under conditions of hyperosmotic stress by at least two human mRNAs, coding for translation reinitiation/recycling factor eIF2D and E3 ubiquitin ligase MDM2. This novel mode of translational control selectively downregulates their expression and requires as few as one uORF. Using a set of reporter mRNAs and fleeting mRNA transfection (FLERT) technique, we provide evidence that the phenomenon does not rely on delayed reinitiation, altered AUG recognition, ribosome stalling, mRNA destabilization or other known mechanisms. Instead, it is based on events taking place at uORF stop codon or immediately downstream. Functional aspects and implications of the novel regulatory mechanism to cell physiology are discussed.
Copyright © 2018 Elsevier B.V. and Société Française de Biochimie et Biologie Moléculaire (SFBBM). All rights reserved.

Entities:  

Keywords:  Cell cycle arrest; Fleeting mRNA transfection assay (FLERT); Hyperosmotic stress; Ribosome recycling; Translation termination; p53 checkpoint

Mesh:

Substances:

Year:  2018        PMID: 30419262     DOI: 10.1016/j.biochi.2018.11.005

Source DB:  PubMed          Journal:  Biochimie        ISSN: 0300-9084            Impact factor:   4.079


  4 in total

1.  Role of the RNA-binding protein La in cancer pathobiology.

Authors:  Gunhild Sommer; Tilman Heise
Journal:  RNA Biol       Date:  2020-07-20       Impact factor: 4.652

2.  Ribosomal leaky scanning through a translated uORF requires eIF4G2.

Authors:  Victoria V Smirnova; Ekaterina D Shestakova; Daria S Nogina; Polina A Mishchenko; Tatiana A Prikazchikova; Timofei S Zatsepin; Ivan V Kulakovskiy; Ivan N Shatsky; Ilya M Terenin
Journal:  Nucleic Acids Res       Date:  2022-01-25       Impact factor: 16.971

3.  uORF-Mediated Translational Regulation of ATF4 Serves as an Evolutionarily Conserved Mechanism Contributing to Non-Small-Cell Lung Cancer (NSCLC) and Stress Response.

Authors:  Wenjing Xiao; Yang Sun; Jinpeng Xu; Na Zhang; Lina Dong
Journal:  J Mol Evol       Date:  2022-08-13       Impact factor: 3.973

4.  Somatic Functional Deletions of Upstream Open Reading Frame-Associated Initiation and Termination Codons in Human Cancer.

Authors:  Lara Jürgens; Felix Manske; Elvira Hubert; Tabea Kischka; Lea Flötotto; Oliver Klaas; Victoria Shabardina; Christoph Schliemann; Wojciech Makalowski; Klaus Wethmar
Journal:  Biomedicines       Date:  2021-05-29
  4 in total

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