Nucleotide-metabolizing ectoenzymes are endowed with an extracellular catalytic domain, which is involved in regulating the extracellular nucleotide/nucleoside balance. The tumor microenvironment contains high levels of adenosine (ADO) generated by this enzymatic network, thus promoting tumor growth by inhibiting anti-tumor immune responses. ADO inhibition in melanoma murine models limits tumor metastases and restores anti-tumor immune responses. This work investigates the expression and function of ectoenzymes in primary human melanoma cell lines. All of latter cells expressed CD38, CD39, CD73, and CD203a/PC-1, and produced ADO from AMP and NAD(+). Melanoma cells inhibited T cell proliferation through an ADO-dependent mechanism, since such inhibition was reverted using CD38/CD73 specific inhibitors. Melanoma cells abolished the function of effector memory, central memory and reduced naive CD4(+) T cell proliferation. Accordingly, phosphorylation of S6 ribosomal protein, p38 and Stat1 was lower in activated memory cells than in naive CD4(+) T lymphocytes. Melanoma cells also inhibited proliferation of naive, memory and -to a lesser extent-of effector CD8(+) T cells. These different inhibitory effects correlated with distinct patterns of expression of the ADO receptor A2a and A2b. These results show that primary human melanoma cell lines suppress in vitro T cell proliferation through an adenosinergic pathway in which CD38 and CD73 play a prominent role

A non-canonical adenosinergic pathway led by CD38 in human melanoma cells induces suppression of T cell proliferation

HORENSTEIN, ALBERTO;CHILLEMI, ANTONELLA;QUARONA, VALERIA;ZACCARELLO, GIANLUCA;MALAVASI, Fabio
2015-01-01

Abstract

Nucleotide-metabolizing ectoenzymes are endowed with an extracellular catalytic domain, which is involved in regulating the extracellular nucleotide/nucleoside balance. The tumor microenvironment contains high levels of adenosine (ADO) generated by this enzymatic network, thus promoting tumor growth by inhibiting anti-tumor immune responses. ADO inhibition in melanoma murine models limits tumor metastases and restores anti-tumor immune responses. This work investigates the expression and function of ectoenzymes in primary human melanoma cell lines. All of latter cells expressed CD38, CD39, CD73, and CD203a/PC-1, and produced ADO from AMP and NAD(+). Melanoma cells inhibited T cell proliferation through an ADO-dependent mechanism, since such inhibition was reverted using CD38/CD73 specific inhibitors. Melanoma cells abolished the function of effector memory, central memory and reduced naive CD4(+) T cell proliferation. Accordingly, phosphorylation of S6 ribosomal protein, p38 and Stat1 was lower in activated memory cells than in naive CD4(+) T lymphocytes. Melanoma cells also inhibited proliferation of naive, memory and -to a lesser extent-of effector CD8(+) T cells. These different inhibitory effects correlated with distinct patterns of expression of the ADO receptor A2a and A2b. These results show that primary human melanoma cell lines suppress in vitro T cell proliferation through an adenosinergic pathway in which CD38 and CD73 play a prominent role
2015
6
28
25602
25618
http://www.impactjournals.com/oncotarget/index.php?journal=oncotarget&page=article&op=download&path%5B%5D=4693&path%5B%5D=11499
Adenosine; Ectoenzymes; Immunosuppression; Melanoma; Oncology
Morandi, Fabio; Morandi, Barbara; Horenstein, Alberto L.; Chillemi, Antonella; Quarona, Valeria; Zaccarello, Gianluca; Carrega, Paolo; Ferlazzo, Guido; Mingari, Maria Cristina; Moretta, Lorenzo; Pistoia, Vito; Malavasi, Fabio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1573553
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