IRE1 endoribonuclease signaling promotes myeloid cell infiltration in glioblastoma

Author:

Obacz Joanna12,Archambeau Jérôme12,Lafont Elodie12,Nivet Manon12,Martin Sophie12,Aubry Marc1,Voutetakis Konstantinos34,Pineau Raphael12,Boniface Rachel1,Sicari Daria12,Pelizzari-Raymundo Diana12,Ghukasyan Gevorg5,McGrath Eoghan12,Vlachavas Efstathios-Iason6,Le Gallo Matthieu12,Le Reste Pierre Jean127,Barroso Kim8910,Fainsod-Levi Tanya11,Obiedat Akram12,Granot Zvi11,Tirosh Boaz12,Samal Juhi13,Pandit Abhay13ORCID,Négroni Luc8910,Soriano Nicolas114,Monnier Annabelle1,Mosser Jean1,Chatziioannou Aristotelis36,Quillien Véronique12,Chevet Eric12,Avril Tony12ORCID

Affiliation:

1. INSERM U1242 , Rennes , France

2. Centre Eugène Marquis , Rennes , France

3. ICB, NHRF , Athens , Greece

4. Department of Biochemistry and Biotechnology , Larissa , Greece

5. Biosit H2P2 , Rennes , France

6. Division of Molecular Genome Analysis, German Cancer Research Center (DKFZ) , Heidelberg , Germany

7. Hospital of St Malo , France

8. IGBMC , Illkirch , France

9. CNRS UMR7104 , Illkirch , France

10. INSERM U1258 , Illkirch , France

11. Department of Developmental Biology and Cancer Research, Hebrew University of Jerusalem , Israel

12. IDR, Hebrew University of Jerusalem , Israel

13. CÚRAM , Ireland

14. CNRS UMR6290 , Rennes , France

Abstract

Abstract Background Intrinsic or environmental stresses trigger the accumulation of improperly folded proteins in the endoplasmic reticulum (ER), leading to ER stress. To cope with this, cells have evolved an adaptive mechanism named the unfolded protein response (UPR) which is hijacked by tumor cells to develop malignant features. Glioblastoma (GB), the most aggressive and lethal primary brain tumor, relies on UPR to sustain growth. We recently showed that IRE1 alpha (referred to IRE1 hereafter), 1 of the UPR transducers, promotes GB invasion, angiogenesis, and infiltration by macrophage. Hence, high tumor IRE1 activity in tumor cells predicts a worse outcome. Herein, we characterized the IRE1-dependent signaling that shapes the immune microenvironment toward monocytes/macrophages and neutrophils. Methods We used human and mouse cellular models in which IRE1 was genetically or pharmacologically invalidated and which were tested in vivo. Publicly available datasets from GB patients were also analyzed to confirm our findings. Results We showed that IRE1 signaling, through both the transcription factor XBP1s and the regulated IRE1-dependent decay controls the expression of the ubiquitin-conjugating E2 enzyme UBE2D3. In turn, UBE2D3 activates the NFκB pathway, resulting in chemokine production and myeloid infiltration in tumors. Conclusions Our work identifies a novel IRE1/UBE2D3 proinflammatory axis that plays an instrumental role in GB immune regulation.

Funder

la Ligue Contre le Cancer

INSERM

INCR

Institut National du Cancer

Région Bretagne

Rennes Métropole

Fondation pour la recherche Médicale

la Ligue Contre le Cancer Comités d’Ille-et-Vilaine

des Côtes d’Armor et du Morbihan

European Regional Development Fund

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Neurology (clinical),Oncology

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