4.7 Article

eIF2α phosphorylation is pathognomonic for immunogenic cell death

Journal

CELL DEATH AND DIFFERENTIATION
Volume 25, Issue 8, Pages 1375-1393

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41418-017-0044-9

Keywords

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Funding

  1. Ligue contre le Cancer (equipe labelisee)
  2. Agence National de la Recherche (ANR) - Projets blancs
  3. ANR
  4. ERA-Net for Research on Rare Diseases
  5. Association pour la recherche sur le cancer (ARC)
  6. Canceropole Ile-de-France
  7. Institut National du Cancer (INCa)
  8. Institut Universitaire de France
  9. Fondation pour la Recherche Medicale [FDM20140630126, FDM 40739]
  10. European Commission (ArtForce)
  11. European Research Council (ERC)
  12. LeDucq Foundation
  13. LabEx Immuno-Oncology
  14. SIRIC Stratified Oncology Cell DNA Repair and Tumor Immune Elimination (SOCRATE)
  15. SIRIC Cancer Research and Personalized Medicine (CARPEM)
  16. Paris Alliance of Cancer Research Institutes (PACRI)
  17. Chinese Scholarship Council
  18. la Ligue contre le cancer
  19. Fondation ARC projects
  20. Fundacao para a Ciencia e a Tecnologia (FCT)
  21. RHU Torino Lumiere

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The phosphorylation of eIF2 alpha is essential for the endoplasmic reticulum (ER) stress response, the formation of stress granules, as well as macroautophagy. Several successful anticancer chemotherapeutics have the property to induce immunogenic cell death (ICD), thereby causing anticancer immune responses. ICD is accompanied by the translocation of calreticulin (CALR) from the ER lumen to the plasma membrane, which facilitates the transfer of tumor-associated antigens to dendritic cells. Here we systematically investigated the capacity of anticancer chemotherapeutics to induce signs of ER stress. ICD inducers including anthracyclines and agents that provoke tetraploidization were highly efficient in enhancing the phosphorylation of eIF2 alpha, yet failed to stimulate other signs of ER stress including the transcriptional activation of activating transcription factor 4 (ATF4), the alternative splicing of X-box binding protein 1 (XBP1s) mRNA and the proteolytic cleavage of activating transcription factor 6 (ATF6) both in vitro and in cancers established in mice. Systematic analyses of clinically used anticancer chemotherapeutics revealed that only eIF2 alpha phosphorylation, but none of the other signs of ER stress, correlated with CALR exposure. eIF2 alpha phosphorylation induced by mitoxantrone, a prototype ICD-inducing anthracyline, was mediated by eIF2 alpha kinase-3 (EIF2AK3). Machine-learning approaches were used to determine the physicochemical properties of drugs that induce ICD, revealing that the sole ER stress response relevant to the algorithm is eIF2 alpha phosphorylation with its downstream consequences CALR exposure, stress granule formation and autophagy induction. Importantly, this approach could reduce the complexity of compound libraries to identify ICD inducers based on their physicochemical and structural characteristics. In summary, it appears that eIF2 alpha phosphorylation constitutes a pathognomonic characteristic of ICD.

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