Caspase-1 in Cx3cr1-expressing cells drives an IL-18-dependent T cell response that promotes parasite control during acute T. gondii infection
Babcock, I. W.; Sibley, L. A.; Labuzan, S. A.; Cowan, M. N.; Sethi, I.; Alemu, S.; Kovacs, M. A.; Lukens, J. R.; Harris, T. H.
Show abstract
Inflammasome activation is a robust innate immune mechanism that promotes inflammatory responses through the release of alarmins and leaderless cytokines, including IL-1, IL-1{beta}, and IL-18. Various stimuli, including infectious agents and cellular stress, cause inflammasomes to assemble and activate caspase-1. Then, caspase-1 cleaves targets that lead to pore formation and leaderless cytokine activation and release. Toxoplasma gondii has been shown to promote inflammasome formation, but the cell types utilizing caspase-1 and the downstream effects on immunological outcomes during acute in vivo infection have not been explored. Here, using knockout mice, we examine the role of caspase-1 responses during acute T. gondii infection globally and in Cx3cr1-positive populations. We provide in vivo evidence that caspase-1 expression is critical for, IL-18 release, optimal interferon-{gamma} (IFN-{psi}) production, monocyte and neutrophil recruitment to the site of infection, and parasite control. Specifically, we find that caspase-1 expression in Cx3cr1-positive cells drives IL-18 release, which potentiates CD4+ T cell IFN-{gamma} production and parasite control. Notably, our Cx3cr1-Casp1 knockouts exhibited a selective T cell defect, mirroring the phenotype observed in Il18 knockouts. In further support of this finding, treatment of Cx3cr1-Casp1 knockout mice with recombinant IL-18 restored CD4+ T cell IFN-{gamma} responses and parasite control. Additionally, we show that neutrophil recruitment is dependent on IL-1 receptor accessory protein (IL-1RAP) signaling but is dispensable for parasite control. Overall, these experiments highlight the multifaceted role of caspase-1 in multiple cell populations contributing to specific pathways that collectively contribute to caspase-1 dependent immunity to T. gondii. AUTHOR SUMMARYWhen a cell undergoes inflammatory cell death, termed pyroptosis, cellular content is released and has the potential to stimulate immune responses. Our work highlights that in the context of T. gondii infection, distinct cell populations undergo pyroptosis each of which has different impacts on how the immune system responds. These findings suggest a collaborative effort of multiple cell types undergoing pyroptosis for optimal immunity to infection. Using a cell-type specific knockout to render macrophages incapable of undergoing pyroptosis, we find that macrophage pyroptosis reinforces adaptive immune cell function, while other populations pyroptosis stimulates the recruitment of innate immune cells into the infected tissue. We go on to identify a specific molecule, IL-18, is released from macrophage pyroptosis that reinforces adaptive immune cell function. By reintroducing IL-18 into the macrophage knockout mice, we successfully restored adaptive immune cell function thereby facilitating the recovery of parasite control. This study outlines the impact of pyroptosis on immunity to T. gondii and stratifies the effects from separate cell populations and their associated downstream pathways.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Deficiency in Bhlhe40 impairs resistance to H. polygyrus bakeri and reveals novel Csf2rb-dependent regulation of anti-helminth immunity 97%
- HOIL1 regulates group 3 innate lymphoid cell numbers in the colon and protects against systemic dissemination, colonic ulceration, and lethality from Citrobacter rodentium infection 96%
- Hypoxia-inducible factor 2α promotes protective Th2 cell responses during intestinal helminth infection 95%
Similar papers in this journal
- ILC1-derived IFN-gamma mediates cDC1-dependent host resistance against Toxoplasma gondii 98%
- Parasite-Induced IFN-g Regulates Host Defense via CD115 and mTOR-Dependent Mechanism of Tissue-Resident Macrophage Death 97%
- Cell-intrinsic IL4R alpha independence of large intestinal RELMα+ Ym1+ macrophages 97%
Similar papers in this journal
- Effects of Low-level Persistent Infection on maintenance of immunity by CD4 T cell subsets and Th1 cytokines 96%
- ICOS expression is required for maintenance but not the formation of germinal centers in the spleen in response to P. yoelii infection. 96%
- Precursor abundance influences divergent antigen specific CD8+ T cell responses after Yersinia pseudotuberculosis foodborne infection 96%
Similar papers in this journal
- Blockade of LAG-3 in PD-L1-deficient mice enhances clearance of blood stage malaria independent of humoral responses 97%
- Interferon-γ-producing CD4+ T cells drive monocyte activation in the bone marrow during experimental Leishmania donovani infection. 97%
- Microglia and perivascular macrophages act as antigen presenting cells to promote CD8 T cell infiltration of the brain 94%
Similar papers in this journal
- IL-33 promotes innate lymphoid cell-dependent IFN-γ production required for innate immunity to Toxoplasma gondii 97%
- Over-expression Screen of Interferon-Stimulated Genes Identifies RARRES3 as a Restrictor of Toxoplasma gondii Infection 96%
- Cytotoxic CD4+ T cells driven by T-cell intrinsic IL-18R/MyD88 signaling predominantly infiltrate Trypanosoma cruzi-infected hearts 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.