Extrafollicular CD4 T cell-derived IL-10 functions rapidly and transiently to support anti-Plasmodium humoral immunity.
Fionna A SuretteJenna J GuthmillerLei LiAlexandria J SturtzRahul VijayRosemary L PopeBrandon L McClellanAngela D PackRyan A ZanderPeng ShaoLinda Yu-Ling LanDaniel Fernandez-RuizWilliam R HeathPatrick C WilsonNoah S ButlerPublished in: PLoS pathogens (2021)
Immunity against malaria depends on germinal center (GC)-derived antibody responses that are orchestrated by T follicular helper (TFH) cells. Emerging data show that the regulatory cytokine IL-10 plays an essential role in promoting GC B cell responses during both experimental malaria and virus infections. Here we investigated the cellular source and temporal role of IL-10, and whether IL-10 additionally signals to CD4 T-cells to support anti-Plasmodium humoral immunity. Distinct from reports of virus infection, we found that IL-10 was expressed by conventional, Foxp3-negative effector CD4 T cells and functioned in a B cell-intrinsic manner only during the first 96 hours of Plasmodium infection to support humoral immunity. The critical functions of IL-10 manifested only before the orchestration of GC responses and were primarily localized outside of B cell follicles. Mechanistically, our studies showed that the rapid and transient provision of IL-10 promoted B cell expression of anti-apoptotic factors, MHC class II, CD83, and cell-cell adhesion proteins that are essential for B cell survival and interaction with CD4 T cells. Together, our data reveal temporal features and mechanisms by which IL-10 critically supports humoral immunity during blood-stage Plasmodium infection, information that may be useful for developing new strategies designed to lessen the burden of malaria.
Keyphrases
- immune response
- plasmodium falciparum
- regulatory t cells
- stem cells
- single cell
- cell death
- healthcare
- electronic health record
- emergency department
- dendritic cells
- machine learning
- oxidative stress
- poor prognosis
- gene expression
- transcription factor
- social media
- signaling pathway
- bone marrow
- artificial intelligence
- single molecule
- health information
- gas chromatography
- atomic force microscopy