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CD226 opposes TIGIT to disrupt Tregs in melanoma
Julien Fourcade, Zhaojun Sun, Joe-Marc Chauvin, Mignane Ka, Diwakar Davar, Ornella Pagliano, Hong Wang, Sofiane Saada, Carmine Menna, Rada Amin, Cindy Sander, John M. Kirkwood, Alan J. Korman, Hassane M. Zarour
Julien Fourcade, Zhaojun Sun, Joe-Marc Chauvin, Mignane Ka, Diwakar Davar, Ornella Pagliano, Hong Wang, Sofiane Saada, Carmine Menna, Rada Amin, Cindy Sander, John M. Kirkwood, Alan J. Korman, Hassane M. Zarour
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Research Article Immunology Oncology

CD226 opposes TIGIT to disrupt Tregs in melanoma

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Abstract

CD4+ Tregs impede T cell responses to tumors. They express multiple inhibitory receptors that support their suppressive functions, including T cell Ig and ITIM domain (TIGIT). In melanoma patients, we show that Tregs exhibit increased TIGIT expression and decreased expression of its competing costimulatory receptor CD226 as compared with CD4+ effector T cells, resulting in an increased TIGIT/CD226 ratio. Tregs failed to upregulate CD226 upon T cell activation. TIGIT+ Tregs are highly suppressive, stable, and enriched in tumors. TIGIT and CD226 oppose each other to augment or disrupt, respectively, Treg suppression and stability. A high TIGIT/CD226 ratio in Tregs correlates with increased Treg frequencies in tumors and poor clinical outcome upon immune checkpoint blockade. Altogether, our findings show that a high TIGIT/CD226 ratio in Tregs regulates their suppressive function and stability in melanoma. They provide the rationale for novel immunotherapies to activate CD226 in Tregs together with TIGIT blockade to counteract Treg suppression in cancer patients.

Authors

Julien Fourcade, Zhaojun Sun, Joe-Marc Chauvin, Mignane Ka, Diwakar Davar, Ornella Pagliano, Hong Wang, Sofiane Saada, Carmine Menna, Rada Amin, Cindy Sander, John M. Kirkwood, Alan J. Korman, Hassane M. Zarour

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Figure 3

TIGIT+ Tregs in melanoma patients are highly suppressive, activated, and stable.

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TIGIT+ Tregs in melanoma patients are highly suppressive, activated, and...
(A) Flow cytometric analysis from 1 representative experiment showing the percentages of CFSElo proliferating responder CD8+ T cells after a 6-day in vitro stimulation (IVS) in the absence or presence of TIGIT– or TIGIT+CD25–CD4+ T effector cells (Teffs) or CD25hiCD127– Tregs isolated from PBMCs of melanoma patients (MPs) and summary data showing the suppression of responder CD8+ T cell proliferation by TIGIT– or TIGIT+ Tregs at Treg-to–responder cell ratios of 1:4 (n = 8), 1:8 (n = 7), and 1:12 (n = 4). (B) Pooled data showing the percentages of Foxp3 expression (n = 10) and Foxp3 Treg-specific demethylated region (TSDR) demethylation (n = 4) in TIGIT– or TIGIT+CD25–CD4+ Teffs or CD25hiCD127– Tregs isolated from PBMCs of MPs. (C) Pooled data showing the production of FGL2 (n = 16) and TGF-β1 (n = 13) by TIGIT– or TIGIT+CD25–CD4+ Teffs or CD25hiCD127– Tregs isolated from PBMCs of MPs after a 6-day IVS with anti-CD3/CD28 beads. (D–F) Summary data showing ex vivo expression (%) of indicated markers (D and E) and percentages of HLA-DR+ and CCR7–CD45RA– cells (F) within TIGIT– and/or TIGIT+CD25–CD4+ Teffs and CD25hiFoxp3+ Tregs in PBMCs of healthy donors (HDs) and melanoma patients (MPs) and in metastatic melanoma (MM) tumor-infiltrating lymphocytes (TILs). n = 20. Results represent the mean of independent experiments. Horizontal bars depict mean values. Error bars indicate SEM. P values were obtained by paired t tests (A–C) and by Friedman’s test and/or Kruskal-Wallis test followed by Dunn’s test or by repeated-measures ANOVA followed by Tukey’s test (D–F). *P < 0.05; **P < 0.01; ***P < 0.001.

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