bioRxiv · 10.1101/2022.09.04.506109
STING activation promotes autologous type I interferon-dependent development of type 1 regulatory T cells during malaria
Abstract
The development of highly effective malaria vaccines and improving drug treatment protocols to boost anti-parasitic immunity is critical for malaria elimination. However, these efforts are hampered by parasite-specific immunoregulatory networks that are rapidly established following exposure to malaria parasites. Here, we identify stimulator of interferon genes (STING) as a critical mediator of type I interferon production by CD4+ T cells during blood-stage Plasmodium falciparum infection. STING activation by cyclic guanosine monophosphate-adenosine monophosphate (cGAMP) stimulated IFNB gene transcription that promoted development of IL-10 and IFN{gamma} co-producing CD4+ T (type I regulatory; Tr1) cells. CD4+ T cell sensitivity to STING phosphorylation increased in healthy volunteers following P. falciparum infection, particularly in Tr1 cells. Finally, we found the JAK1/2 inhibitor ruxolitinib modulated this innate signalling axis in CD4+ T cells to increase parasite-specific Th1 and diminish Tr1 cell responses. These findings identify STING as a critical mediator of Tr1 cell development during malaria.
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Wang, Y., Rivera, F., Edwards, C., Frame, T., Engel, J. A., Bukali, L., Na, J., Ng, S., Corvino, D., Montes de Oca, M., Bunn, P., Soon, M., Andrew, D., Loughland, J., Amante, F., Barber, B., McCarthy, J. S., Lopez, J. A., Boyle, M. J., Engwerda, C.. 2022-09-05. STING activation promotes autologous type I interferon-dependent development of type 1 regulatory T cells during malaria. https://doi.org/10.1101/2022.09.04.506109
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