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Epitope spreading toward wild-type melanocyte-lineage antigens rescues suboptimal immune checkpoint blockade responses

  • Jennifer A. Lo
  • , Masayoshi Kawakubo
  • , Vikram R. Juneja
  • , Mack Y. Su
  • , Tal H. Erlich
  • , Martin W. Lafleur
  • , Lajos V. Kemeny
  • , Mamunur Rashid
  • , Mohsen Malehmir
  • , S. Alireza Rabi
  • , Rumya Raghavan
  • , Jennifer Allouche
  • , Gyulnara Kasumova
  • , Dennie T. Frederick
  • , Kristen E. Pauken
  • , Qing Yu Weng
  • , Marcelo Pereira da silva
  • , Yu Xu
  • , Anita A. J. Van der sande
  • , Whitney Silkworth
  • Elisabeth Roider, Edward P. Browne, David J. Lieb, Belinda Wang, Levi A. Garraway, Catherine J. Wu, Keith T. Flaherty, Constance E. Brinckerhoff, David W. Mullins, David J. Adams, Nir Hacohen, Mai P. Hoang, Genevieve M. Boland*, Gordon J. Freeman*, Arlene H. Sharpe*, Dieter Manstein*, David E. Fisher*
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Although immune checkpoint inhibitors (ICIs), such as anti–programmed cell death protein–1 (PD-1), can deliver durable antitumor effects, most patients with cancer fail to respond. Recent studies suggest that ICI efficacy correlates with a higher load of tumor-specific neoantigens and development of vitiligo in patients with melanoma. Here, we report that patients with low melanoma neoantigen burdens who responded to ICI had tumors with higher expression of pigmentation-related genes. Moreover, expansion of peripheral blood CD8+ T cell populations specific for melanocyte antigens was observed only in patients who responded to anti–PD-1 therapy, suggesting that ICI can promote breakdown of tolerance toward tumor-lineage self-antigens. In a mouse model of poorly immunogenic melanomas, spreading of epitope recognition toward wild-type melanocyte antigens was associated with markedly improved anti–PD-1 efficacy in two independent approaches: introduction of neoantigens by ultraviolet (UV) B radiation mutagenesis or the therapeutic combination of ablative fractional photothermolysis plus imiquimod. Complete responses against UV mutation-bearing tumors after anti–PD-1 resulted in protection from subsequent engraftment of melanomas lacking any shared neoantigens, as well as pancreatic adenocarcinomas forcibly overexpressing melanocyte-lineage antigens. Our data demonstrate that somatic mutations are sufficient to provoke strong antitumor responses after checkpoint blockade, but long-term responses are not restricted to these putative neoantigens. Epitope spreading toward T cell recognition of wild-type tumor-lineage self-antigens represents a common pathway for successful response to ICI, which can be evoked in neoantigen-deficient tumors by combination therapy with ablative fractional photothermolysis and imiquimod.
Original languageEnglish
Article numbereabd8636
Number of pages12
JournalScience Translational Medicine
Volume13
Issue number581
DOIs
Publication statusPublished - 17 Feb 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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