Distinct requirements for activation of NKT and NK cells during viral infection

AJ Tyznik, S Verma, Q Wang, M Kronenberg… - The Journal of …, 2014 - journals.aai.org
AJ Tyznik, S Verma, Q Wang, M Kronenberg, CA Benedict
The Journal of Immunology, 2014journals.aai.org
NK cells are key regulators of innate defense against mouse CMV (MCMV). Like NK cells,
NKT cells also produce high levels of IFN-γ rapidly after MCMV infection. However, whether
similar mechanisms govern activation of these two cell types, as well as the significance of
NKT cells for host resistance, remain unknown. In this article, we show that, although both
NKT and NK cells are activated via cytokines, their particular cytokine requirements differ
significantly in vitro and in vivo. IL-12 is required for NKT cell activation in vitro but is not …
Abstract
NK cells are key regulators of innate defense against mouse CMV (MCMV). Like NK cells, NKT cells also produce high levels of IFN-γ rapidly after MCMV infection. However, whether similar mechanisms govern activation of these two cell types, as well as the significance of NKT cells for host resistance, remain unknown. In this article, we show that, although both NKT and NK cells are activated via cytokines, their particular cytokine requirements differ significantly in vitro and in vivo. IL-12 is required for NKT cell activation in vitro but is not sufficient, whereas NK cells have the capacity to be activated more promiscuously in response to individual cytokines from innate cells. In line with these results, GM-CSF–derived dendritic cells activated only NK cells upon MCMV infection, consistent with their virtual lack of IL-12 production, whereas Flt3 ligand–derived dendritic cells produced IL-12 and activated both NK and NKT cells. In vivo, NKT cell activation was abolished in IL-12−/− mice infected with MCMV, whereas NK cells were still activated. In turn, splenic NK cell activation was more IL-18 dependent. The differential requirements for IL-12 and IL-18 correlated with the levels of cytokine receptor expression by NK and NKT cells. Finally, mice lacking NKT cells showed reduced control of MCMV, and depleting NK cells further enhanced viral replication. Taken together, our results show that NKT and NK cells have differing requirements for cytokine-mediated activation, and both can contribute nonredundantly to MCMV defense, revealing that these two innate lymphocyte subsets function together to fine-tune antiviral responses.
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