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PGE2 limits effector expansion of tumour-infiltrating stem-like CD8+ T cells

Author

Listed:
  • Sebastian B. Lacher

    (Technical University of Munich (TUM))

  • Janina Dörr

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Gustavo P. Almeida

    (TUM)

  • Julian Hönninger

    (Technical University of Munich (TUM)
    TUM)

  • Felix Bayerl

    (Technical University of Munich (TUM))

  • Anna Hirschberger

    (Technical University of Munich (TUM))

  • Anna-Marie Pedde

    (Technical University of Munich (TUM))

  • Philippa Meiser

    (Technical University of Munich (TUM))

  • Lukas Ramsauer

    (Technical University of Munich (TUM))

  • Thomas J. Rudolph

    (Technical University of Munich (TUM))

  • Nadine Spranger

    (Technical University of Munich (TUM))

  • Matteo Morotti

    (University of Lausanne (UNIL)
    University Hospital of Lausanne (CHUV) and UNIL
    Agora Cancer Research Center)

  • Alizee J. Grimm

    (University of Lausanne (UNIL)
    University Hospital of Lausanne (CHUV) and UNIL
    Agora Cancer Research Center)

  • Sebastian Jarosch

    (TUM
    Boehringer Ingelheim)

  • Arman Oner

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Lisa Gregor

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Stefanie Lesch

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Stefanos Michaelides

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Luisa Fertig

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Daria Briukhovetska

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Lina Majed

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich)

  • Sophia Stock

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich
    LMU University Hospital, LMU Munich
    German Cancer Consortium (DKTK), partner site Munich, a partnership between DKFZ and LMU University Hospital)

  • Dirk H. Busch

    (TUM)

  • Veit R. Buchholz

    (TUM)

  • Percy A. Knolle

    (Technical University of Munich (TUM))

  • Dietmar Zehn

    (TUM)

  • Denarda Dangaj Laniti

    (University of Lausanne (UNIL)
    University Hospital of Lausanne (CHUV) and UNIL
    Agora Cancer Research Center)

  • Sebastian Kobold

    (LMU University Hospital, Member of the German Center for Lung Research (DZL), LMU Munich
    German Cancer Consortium (DKTK), partner site Munich, a partnership between DKFZ and LMU University Hospital
    Research Center for Environmental Health (HMGU))

  • Jan P. Böttcher

    (Technical University of Munich (TUM))

Abstract

Cancer-specific TCF1+ stem-like CD8+ T cells can drive protective anticancer immunity through expansion and effector cell differentiation1–4; however, this response is dysfunctional in tumours. Current cancer immunotherapies2,5–9 can promote anticancer responses through TCF1+ stem-like CD8+ T cells in some but not all patients. This variation points towards currently ill-defined mechanisms that limit TCF1+CD8+ T cell-mediated anticancer immunity. Here we demonstrate that tumour-derived prostaglandin E2 (PGE2) restricts the proliferative expansion and effector differentiation of TCF1+CD8+ T cells within tumours, which promotes cancer immune escape. PGE2 does not affect the priming of TCF1+CD8+ T cells in draining lymph nodes. PGE2 acts through EP2 and EP4 (EP2/EP4) receptor signalling in CD8+ T cells to limit the intratumoural generation of early and late effector T cell populations that originate from TCF1+ tumour-infiltrating CD8+ T lymphocytes (TILs). Ablation of EP2/EP4 signalling in cancer-specific CD8+ T cells rescues their expansion and effector differentiation within tumours and leads to tumour elimination in multiple mouse cancer models. Mechanistically, suppression of the interleukin-2 (IL-2) signalling pathway underlies the PGE2-mediated inhibition of TCF1+ TIL responses. Altogether, we uncover a key mechanism that restricts the IL-2 responsiveness of TCF1+ TILs and prevents anticancer T cell responses that originate from these cells. This study identifies the PGE2–EP2/EP4 axis as a molecular target to restore IL-2 responsiveness in anticancer TILs to achieve cancer immune control.

Suggested Citation

  • Sebastian B. Lacher & Janina Dörr & Gustavo P. Almeida & Julian Hönninger & Felix Bayerl & Anna Hirschberger & Anna-Marie Pedde & Philippa Meiser & Lukas Ramsauer & Thomas J. Rudolph & Nadine Spranger, 2024. "PGE2 limits effector expansion of tumour-infiltrating stem-like CD8+ T cells," Nature, Nature, vol. 629(8011), pages 417-425, May.
  • Handle: RePEc:nat:nature:v:629:y:2024:i:8011:d:10.1038_s41586-024-07254-x
    DOI: 10.1038/s41586-024-07254-x
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