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Epigenetic state determines the in vivo efficacy of STING agonist therapy

Author

Listed:
  • Rana Falahat

    (Moffitt Cancer Center)

  • Anders Berglund

    (Moffitt Cancer Center)

  • Patricio Perez-Villarroel

    (Moffitt Cancer Center)

  • Ryan M. Putney

    (Moffitt Cancer Center)

  • Imene Hamaidi

    (Moffitt Cancer Center)

  • Sungjune Kim

    (Moffitt Cancer Center
    Moffitt Cancer Center)

  • Shari Pilon-Thomas

    (Moffitt Cancer Center
    Moffitt Cancer Center)

  • Glen N. Barber

    (University of Miami Miller School of Medicine)

  • James J. Mulé

    (Moffitt Cancer Center
    Moffitt Cancer Center
    Moffitt Cancer Center)

Abstract

While STING-activating agents have shown limited efficacy in early-phase clinical trials, multiple lines of evidence suggest the importance of tumor cell-intrinsic STING function in mediating antitumor immune responses. Although STING signaling is impaired in human melanoma, its restoration through epigenetic reprogramming can augment its antigenicity and T cell recognition. In this study, we show that reversal of methylation silencing of STING in murine melanoma cell lines using a clinically available DNA methylation inhibitor can improve agonist-induced STING activation and type-I IFN induction, which, in tumor-bearing mice, can induce tumor regression through a CD8+ T cell-dependent immune response. These findings not only provide mechanistic insight into how STING signaling dysfunction in tumor cells can contribute to impaired responses to STING agonist therapy, but also suggest that pharmacological restoration of STING signaling through epigenetic reprogramming might improve the therapeutic efficacy of STING agonists.

Suggested Citation

  • Rana Falahat & Anders Berglund & Patricio Perez-Villarroel & Ryan M. Putney & Imene Hamaidi & Sungjune Kim & Shari Pilon-Thomas & Glen N. Barber & James J. Mulé, 2023. "Epigenetic state determines the in vivo efficacy of STING agonist therapy," Nature Communications, Nature, vol. 14(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-37217-1
    DOI: 10.1038/s41467-023-37217-1
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