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Disruption of tRNA threonylation triggers RIG-I mediated anti-tumour immune response

Author

Listed:
  • Cléa Dziagwa

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Christian Seca

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Coralie Capron

    (University of Liège, Laboratory of Cancer Stemness, GIGA-Institute)

  • Chloe Maurizy

    (University of Liège, Laboratory of Cancer biology, GIGA-Institute)

  • Ning An

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Denis Heusdens

    (University of Liège, Laboratory of Metabolic Regulation, GIGA-Institute)

  • Timothy Budden

    (The University of Manchester, Skin Cancer and Ageing Lab, Cancer Research UK Manchester Institute
    The University of Manchester, Department of Dermatology, Salford Royal NHS Foundation Trust, NIHR Manchester Biomedical Research Centre
    The University of Liverpool, Department of Molecular and Clinical Cancer Medicine)

  • Lorena Martin-Morales

    (University of Liège, Laboratory of Cancer Stemness, GIGA-Institute)

  • Miguel Susaeta Ruiz

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Elodie Renaude

    (University of Liège, Laboratory of Metabolic Regulation, GIGA-Institute)

  • Najla El-Hachem

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Raphael Vanleyssem

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Marine Leclercq

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute)

  • Arnaud Blomme

    (University of Liège, Laboratory of Metabolic Regulation, GIGA-Institute)

  • Alain Chariot

    (University of Liège, Laboratory of Cancer biology, GIGA-Institute
    WEL Research Institute, WELBIO department)

  • Jochen Utikal

    (German Cancer Research Center (DKFZ), Skin Cancer Unit
    University Medical Centre Mannheim, Ruprecht-Karl University of Heidelberg, Department of Dermatology, Venereology and Allergology
    Germany Cancer Research Centre – Deutsches Krebsforschungszentrum (DKFZ), DKFZ Hector Cancer Institute at the University Medical Centre Mannheim)

  • Amaya Viros

    (The University of Manchester, Skin Cancer and Ageing Lab, Cancer Research UK Manchester Institute
    The University of Manchester, Department of Dermatology, Salford Royal NHS Foundation Trust, NIHR Manchester Biomedical Research Centre)

  • Francesca Rapino

    (University of Liège, Laboratory of Cancer Stemness, GIGA-Institute
    WEL Research Institute, WELBIO department)

  • Sylvain Delaunay

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute
    The University of Manchester, Laboratory of RNA dynamics in Cancer, Cancer Research UK Manchester Institute)

  • Pierre Close

    (University of Liège, Laboratory of Cancer Signaling, GIGA-Institute
    WEL Research Institute, WELBIO department)

Abstract

Tumour-induced mechanisms of immune evasion hinder immune response to cancer, particularly in melanoma. mRNA translation, by ensuring accurate protein synthesis, regulates cancer phenotypes and immune response, but the underlying mechanisms remain unclear. Here, we reveal how O-sialoglycoprotein endopeptidase (OSGEP), catalysing the tRNA modification N6-threonylcarbamoyladenosine (t6A), drives protein homeostasis in cancer cells to maintain T-cell exclusion and prevent anti-tumour immune response. t6A-deficient melanoma cells disrupt efficient cytoplasmic translation of ANN codons (trinucleotides with A in the first position and N = any nucleotide), causing specific protein aggregation and the formation of integrated stress response-dependent stress granules. We discovered that OSGEP loss triggers melanoma regression by relocating RIG-I to stress granules, leading to its pathway activation. As a result, T-cells are recruited to the tumour site and orchestrate an anti-tumour immune response. Finally, an OSGEP-driven gene signature in melanoma patients is associated with T-cell infiltration and improved overall survival. Together, our findings position t6A tRNA modification as a promising therapeutic target for melanoma treatment.

Suggested Citation

  • Cléa Dziagwa & Christian Seca & Coralie Capron & Chloe Maurizy & Ning An & Denis Heusdens & Timothy Budden & Lorena Martin-Morales & Miguel Susaeta Ruiz & Elodie Renaude & Najla El-Hachem & Raphael Va, 2026. "Disruption of tRNA threonylation triggers RIG-I mediated anti-tumour immune response," Nature Communications, Nature, vol. 17(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:17:y:2026:i:1:d:10.1038_s41467-026-69964-2
    DOI: 10.1038/s41467-026-69964-2
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