CD73 ectonucleotidase restrains CD8+T cell metabolic fitness and anti-tumoral activity
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Briceño Catalán, Pedro Felipe
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CD73 ectonucleotidase restrains CD8+T cell metabolic fitness and anti-tumoral activity
Author
- Briceño Catalán, Pedro Felipe;
- Rivas Yáñez, Elizabeth Camila;
- Rosemblatt Bono, Mariana Violeta;
- Parra Tello, Brian Josué;
- Farías, Paula;
- Vargas, Leonardo;
- Simon Zegers, María Valeska;
- Cárdenas, César;
- Lladser, Álvaro;
- Salazar Onfray, Flavio Andrés;
- Elorza, Álvaro A.;
- Rosemblatt Silber, Mario César;
- Bono Merino, María Rosa;
- Sauma Mahaluf, Daniela Macarena;
Abstract
CD39 and CD73 are ectoenzymes that dephosphorylate ATP into its metabolites; ADP, AMP, and adenosine, and thus are considered instrumental in the development of immunosuppressive microenvironments. We have previously shown that within the CD8+ T cell population, naive and memory cells express the CD73 ectonucleotidase, while terminally differentiated effector cells are devoid of this enzyme. This evidence suggests that adenosine might exert an autocrine effect on CD8+ T cells during T cell differentiation. To study the possible role of CD73 and adenosine during this process, we compared the expression of the adenosinergic signaling components, the phenotype, and the functional properties between CD73-deficient and WT CD8+ T cells. Upon activation, we observed an upregulation of CD73 expression in CD8+ T cells along with an upregulation of the adenosine A2A receptor. Interestingly, when we differentiated CD8+ T cells to Tc1 cells in vitro, we observed that these cells produce adenosine and that CD73-deficient cells present a higher cytotoxic potential evidenced by an increase in IFN-gamma, TNF-alpha, and granzyme B production. Moreover, CD73-deficient cells presented a increased glucose uptake and higher mitochondrial respiration, indicating that this ectonucleotidase restrict the mitochondrial capacity in CD8+ T cells. In agreement, when adoptively transferred, antigen-specific CD73-deficient CD8+ T cells were more effective in reducing the tumor burden in B16.OVA melanoma-bearing mice and presented lower levels of exhaustion markers than wild type cells. All these data suggest an autocrine effect of CD73-mediated adenosine production, limiting differentiation and cytotoxic T cells' metabolic fitness.
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Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT 1180385
1191438
1180983
1200255
FONDEQUIP/EQM 140016
CONICYT AFB 170004
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT) 21151511
ONICYT/FONDAP 15150012
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Frontiers in Cell and Developmental Biology February 2021 Volume 9 Article 638037
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