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Activation of melanocortin-1 receptor signaling in melanoma cells impairs T cell infiltration to dampen antitumor immunity

Author

Listed:
  • Yazhong Cui

    (Graduate School of Peking Union Medical College and Chinese Academy of Medical Sciences
    National Institute of Biological Sciences)

  • Yang Miao

    (National Institute of Biological Sciences
    Tsinghua University)

  • Longzhi Cao

    (Graduate School of Peking Union Medical College and Chinese Academy of Medical Sciences
    National Institute of Biological Sciences)

  • Lifang Guo

    (Capital Medical University)

  • Yue Cui

    (National Institute of Biological Sciences
    Beijing Normal University)

  • Chuanzhe Yan

    (National Institute of Biological Sciences
    Peking University)

  • Zhi Zeng

    (Graduate School of Peking Union Medical College and Chinese Academy of Medical Sciences
    National Institute of Biological Sciences)

  • Mo Xu

    (Graduate School of Peking Union Medical College and Chinese Academy of Medical Sciences
    National Institute of Biological Sciences
    Tsinghua University)

  • Ting Han

    (Graduate School of Peking Union Medical College and Chinese Academy of Medical Sciences
    National Institute of Biological Sciences
    Tsinghua University)

Abstract

Inhibition of T cell infiltration dampens antitumor immunity and causes resistance to immune checkpoint blockade (ICB) therapy. By in vivo CRISPR screening in B16F10 melanoma in female mice, here we report that loss of melanocortin-1 receptor (MC1R) in melanoma cells activates antitumor T cell response and overcomes resistance to ICB. Depletion of MC1R from another melanocytic melanoma model HCmel1274 also enhances ICB efficacy. By activating the GNAS-PKA axis, MC1R inhibits interferon-gamma induced CXCL9/10/11 transcription, thus impairing T cell infiltration into the tumor microenvironment. In human melanomas, high MC1R expression correlates with reduced CXCL9/10/11 expression, impaired T cell infiltration, and poor patient prognosis. Whereas MC1R activation is restricted to melanoma, GNAS activation by hotspot mutations is observed across diverse cancer types and is associated with reduced CXCL9/10/11 expression. Our study implicates MC1R as a melanoma immunotherapy target and suggests GNAS-PKA signaling as a pan-cancer oncogenic pathway inhibiting antitumor T cell response.

Suggested Citation

  • Yazhong Cui & Yang Miao & Longzhi Cao & Lifang Guo & Yue Cui & Chuanzhe Yan & Zhi Zeng & Mo Xu & Ting Han, 2023. "Activation of melanocortin-1 receptor signaling in melanoma cells impairs T cell infiltration to dampen antitumor immunity," Nature Communications, Nature, vol. 14(1), pages 1-18, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-41101-3
    DOI: 10.1038/s41467-023-41101-3
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    1. Dongjun Peng & Ilona Kryczek & Nisha Nagarsheth & Lili Zhao & Shuang Wei & Weimin Wang & Yuqing Sun & Ende Zhao & Linda Vatan & Wojciech Szeliga & Jan Kotarski & Rafał Tarkowski & Yali Dou & Kathleen , 2015. "Epigenetic silencing of TH1-type chemokines shapes tumour immunity and immunotherapy," Nature, Nature, vol. 527(7577), pages 249-253, November.
    2. Sanjeev Mariathasan & Shannon J. Turley & Dorothee Nickles & Alessandra Castiglioni & Kobe Yuen & Yulei Wang & Edward E. Kadel III & Hartmut Koeppen & Jillian L. Astarita & Rafael Cubas & Suchit Jhunj, 2018. "TGFβ attenuates tumour response to PD-L1 blockade by contributing to exclusion of T cells," Nature, Nature, vol. 554(7693), pages 544-548, February.
    3. Vijay Shankaran & Hiroaki Ikeda & Allen T. Bruce & J. Michael White & Paul E. Swanson & Lloyd J. Old & Robert D. Schreiber, 2001. "IFNγ and lymphocytes prevent primary tumour development and shape tumour immunogenicity," Nature, Nature, vol. 410(6832), pages 1107-1111, April.
    4. Jennifer Y. Lin & David E. Fisher, 2007. "Melanocyte biology and skin pigmentation," Nature, Nature, vol. 445(7130), pages 843-850, February.
    5. Robert T. Manguso & Hans W. Pope & Margaret D. Zimmer & Flavian D. Brown & Kathleen B. Yates & Brian C. Miller & Natalie B. Collins & Kevin Bi & Martin W. LaFleur & Vikram R. Juneja & Sarah A. Weiss &, 2017. "In vivo CRISPR screening identifies Ptpn2 as a cancer immunotherapy target," Nature, Nature, vol. 547(7664), pages 413-418, July.
    6. Wen Xue & Sidi Chen & Hao Yin & Tuomas Tammela & Thales Papagiannakopoulos & Nikhil S. Joshi & Wenxin Cai & Gillian Yang & Roderick Bronson & Denise G. Crowley & Feng Zhang & Daniel G. Anderson & Phil, 2014. "CRISPR-mediated direct mutation of cancer genes in the mouse liver," Nature, Nature, vol. 514(7522), pages 380-384, October.
    7. Yingyao Zhou & Bin Zhou & Lars Pache & Max Chang & Alireza Hadj Khodabakhshi & Olga Tanaseichuk & Christopher Benner & Sumit K. Chanda, 2019. "Metascape provides a biologist-oriented resource for the analysis of systems-level datasets," Nature Communications, Nature, vol. 10(1), pages 1-10, December.
    8. Jeffrey J. Ishizuka & Robert T. Manguso & Collins K. Cheruiyot & Kevin Bi & Arpit Panda & Arvin Iracheta-Vellve & Brian C. Miller & Peter P. Du & Kathleen B. Yates & Juan Dubrot & Ilana Buchumenski & , 2019. "Loss of ADAR1 in tumours overcomes resistance to immune checkpoint blockade," Nature, Nature, vol. 565(7737), pages 43-48, January.
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