Regulatory T cells impede acute and long-term immunity to blood-stage malaria through CTLA-4.

Kurup, Samarchith P; Obeng-Adjei, Nyamekye; Anthony, Scott M; Traore, Boubacar; Doumbo, Ogobara K; Butler, Noah S; Crompton, Peter D; Harty, John T · Nat Med · 2017

basic_science · Level V

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Abstract

Malaria, caused by the protozoan Plasmodium, is a devastating mosquito-borne disease with the potential to affect nearly half the world's population. Despite mounting substantial T and B cell responses, humans fail to efficiently control blood-stage malaria or develop sterilizing immunity to reinfections. Although forkhead box P3 (FOXP3)<sup>+</sup>CD4<sup>+</sup> regulatory T (T<sub>reg</sub>) cells form a part of these responses, their influence remains disputed and their mode of action is unknown. Here we show that T<sub>reg</sub> cells expand in both humans and mice in blood-stage malaria and interfere with conventional T helper cell responses and follicular T helper (T<sub>FH</sub>)-B cell interactions in germinal centers. Mechanistically, T<sub>reg</sub> cells function in a critical temporal window to impede protective immunity through cytotoxic-T-lymphocyte-associated protein-4 (CTLA-4). Targeting T<sub>reg</sub> cells or CTLA-4 in this precise window accelerated parasite clearance and generated species-transcending immunity to blood-stage malaria in mice. Our study uncovers a critical mechanism of immunosuppression associated with blood-stage malaria that delays parasite clearance and prevents development of potent adaptive immunity to reinfection. These data also reveal a temporally discrete and potentially therapeutically amenable functional role for T<sub>reg</sub> cells and CTLA-4 in limiting antimalarial immunity.

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