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Genetically driven CD39 expression shapes human tumor‐infiltrating CD8+ T‐cell functions

肿瘤浸润淋巴细胞 颗粒酶B CD8型 生物 离体 免疫学 T细胞 癌症研究 分子生物学 体内 抗原 免疫系统 遗传学
作者
Daniela Gallerano,Selina Ciminati,Alessio Grimaldi,Silvia Piconese,Ilenia Cammarata,Chiara Focaccetti,Ilenia Pacella,Daniele Accapezzato,Francesco Lancellotti,Luca Sacco,Roberto Caronna,Ombretta Melaiu,Doriana Fruci,Valentina Doria,Emy Manzi,Andrea Sagnotta,Chiara Parrino,Diego Coletta,Giovanna Peruzzi,Valentina Terenzi
出处
期刊:International Journal of Cancer [Wiley]
卷期号:147 (9): 2597-2610 被引量:39
标识
DOI:10.1002/ijc.33131
摘要

In our study, we investigated the role of CD39 on tumor-infiltrating CD8+ T lymphocytes (CD8+ TILs) in colorectal, head and neck and pancreatic cancers. Partially confirming recent observations correlating the CD39 expression with T-cell exhaustion, we demonstrated a divergent functional activity in CD39+ CD8+ TILs. On the one hand, CD39+ CD8+ TILs (as compared to their CD39- counterparts) produced significantly lower IFN-γ and IL-2 amounts, expressed higher PD-1, and inversely correlated with perforin and granzyme B expression. On the other, they displayed a significantly higher proliferative capacity ex vivo that was inversely correlated with the PD-1 expression. Therefore, CD39+ CD8+ TILs, including those co-expressing the CD103 (a marker of T resident memory [TRM] cells), were defined as partially dysfunctional T cells that correlate with tumor patients with initial progression stages. Interestingly, our results identified for the first time a single nucleotide polymorphism (SNP rs10748643 A>G), as a genetic factor associated with CD39 expression in CD8+ TILs. Finally, we demonstrated that compounds inhibiting CD39-related ATPases improved CD39+ CD8+ T-cell effector function ex vivo, and that CD39+ CD8+ TILs displayed effective suppression function in vitro. Overall these data suggest that the SNP analysis may represent a suitable predictor of CD39+ CD8+ T-cell expression in cancer patients, and propose the modulation of CD39 as a new strategy to restore partially exhausted CD8+ TILs.
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