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Stress-induced tyrosine phosphorylation of RtcB modulates IRE1 activity and signaling outputs

Authors :
Alexandra Papaioannou
Federica Centonze
Alice Metais
Marion Maurel
Luc Negroni
Matías Gonzalez-Quiroz
Sayyed Jalil Mahdizadeh
Gabriella Svensson
Ensieh Zare
Alice Blondel
Albert C Koong
Claudio Hetz
Rémy Pedeux
Michel L Tremblay
Leif A Eriksson
Eric Chevet
Chemistry, Oncogenesis, Stress and Signaling (COSS)
Université de Rennes (UR)-CRLCC Eugène Marquis (CRLCC)-Institut National de la Santé et de la Recherche Médicale (INSERM)
CRLCC Eugène Marquis (CRLCC)
Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC)
Université de Strasbourg (UNISTRA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)
University of Gothenburg (GU)
The University of Texas M.D. Anderson Cancer Center [Houston]
Universidad de Chile = University of Chile [Santiago] (UCHILE)
McGill University = Université McGill [Montréal, Canada]
This work was funded by grants from Institut National du Cancer (PLBIO), SIRIC-ILIAD/Cancéropôle Grand Ouest to E Chevet, Fondation pour la Recherche Médicale (équipe labellisée 2018) to E Chevet and R Pedeux
by European Union (EU) H2020 MSCA ITN-675448 (TRAINERS), and MSCA RISE-734749 (INSPIRED) grants to E Chevet and LA Eriksson. The Swedish Research Council (VR) and the Swedish National Infrastructure for Computing are gratefully acknowledged for funding and allocations of computing time at the C3SE and PDC supercomputing centers, respectively (LA Eriksson). A Papaioannou is a Marie Curie early-stage researcher funded by EU H2020 MSCA ITN-675448 (TRAINERS). A Metais was funded by the Fondation ARC pour la recherche contre le cancer. SJ Mahdizadeh was funded by the Vinnova Seal-of-Excellence programme 2019-02205 (CaTheDRA).
European Project: 675448,H2020,H2020-MSCA-ITN-2015,TRAIN-ERS(2015)
Source :
Life Science Alliance, Life Science Alliance, 2022, 5 (5), pp.e202201379. ⟨10.26508/lsa.202201379⟩
Publication Year :
2022
Publisher :
HAL CCSD, 2022.

Abstract

International audience; ER stress is mediated by three sensors and the most evolutionary conserved IRE1α signals through its cytosolic kinase and endoribonuclease (RNase) activities. IRE1α RNase activity can either catalyze the initial step of XBP1 mRNA unconventional splicing or degrade a number of RNAs through regulated IRE1-dependent decay. Until now, the biochemical and biological outputs of IRE1α RNase activity have been well documented; however, the precise mechanisms controlling whether IRE1α signaling is adaptive or pro-death (terminal) remain unclear. We investigated those mechanisms and hypothesized that XBP1 mRNA splicing and regulated IRE1-dependent decay activity could be co-regulated by the IRE1α RNase regulatory network. We identified that RtcB, the tRNA ligase responsible for XBP1 mRNA splicing, is tyrosine-phosphorylated by c-Abl and dephosphorylated by PTP1B. Moreover, we show that the phosphorylation of RtcB at Y306 perturbs RtcB interaction with IRE1α, thereby attenuating XBP1 mRNA splicing. Our results demonstrate that the IRE1α RNase regulatory network is dynamically fine-tuned by tyrosine kinases and phosphatases upon various stresses and that the extent of RtcB tyrosine phosphorylation determines cell adaptive or death outputs.

Details

Language :
English
ISSN :
25751077
Database :
OpenAIRE
Journal :
Life Science Alliance, Life Science Alliance, 2022, 5 (5), pp.e202201379. ⟨10.26508/lsa.202201379⟩
Accession number :
edsair.doi.dedup.....d82681600e6d281c467af811e0ea28b4