IL-27 maintains cytotoxic Ly6C+ gamma delta T cells that arise from immature precursors
Wiesheu, R.; Edwards, S. C.; Hedley, A.; Tosolini, M.; Fares da Silva, M. G. F.; Sumaria, N.; Optaczy, Y.; Hill, D. G.; Hayes, A. J.; Hay, J.; Kilbey, A.; Michie, A. M.; Graham, G.; Manoharan, A.; Halsey, C.; Jones, G. W.; Blyth, K.; Fournie, J.-J.; Pennington, D.; Bekiaris, V.; Coffelt, S. B.
Show abstract
In mice, {gamma}{delta} T cells that express the co-stimulatory molecule, CD27, are committed to the IFN{gamma}-producing lineage in the thymus, and in the periphery, these cells play a critical role in host defence and anti-tumor immunity. Unlike {beta} T cells that rely on MHC-presented peptides to drive their terminal differentiation, it is unclear whether MHC-unrestricted {gamma}{delta} T cells undergo further functional maturation after exiting the thymus. Here, we provide evidence of phenotypic and functional diversity within peripheral IFN{gamma}-producing {gamma}{delta} T cells. We found that immature CD27+Ly6C-- cells convert into mature CD27+Ly6C+ cells, and these mature cells control cancer progression while the immature cells cannot. The gene signatures of these two subsets were highly analogous to human immature and mature {gamma}{delta} T cells, indicative of conservation across species. We show that IL-27 supports the cytotoxic phenotype and function of mouse CD27+Ly6C+ cells and human V{delta}2+ cells, while IL-27 is dispensable for mouse CD27+Ly6C-- cells and human V{delta}1+ cells. These data reveal increased complexity within IFN{gamma}-producing {gamma}{delta} T cells, comprising of immature and terminally differentiated subsets, that offer new insights into unconventional T cell biology.
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