Intestinal cDC1s provide IL-12 dependent and independent functions required for CD4+ T cell mediated resistance to Cryptosporidium
Cohn, I. S.; Wallbank, B. A.; Haskins, B. E.; O'Dea, K. M.; Pardy, R. D.; Shaw, S.; Merolle, M. I.; Gullicksrud, J.; Christian, D. A.; Striepen, B.; Hunter, C. A.
Show abstract
Cryptosporidium is an enteric pathogen that is a prominent cause of diarrheal disease. Control of this infection requires CD4+ T cells, though the processes that lead to T cell-mediated resistance have been difficult to assess. Here, Cryptosporidium parasites that express MHCII-restricted model antigens were generated to dissect the early events that influence CD4+ T cell priming and effector function. These studies highlight that parasite-specific CD4+ T cells are primed in the draining mesenteric lymph node (mesLN) and differentiate into Th1 cells in the gut, where they mediate IFN-{gamma}-dependent control of the infection. Although type 1 conventional dendritic cells (cDC1s) were not required for initial priming of CD4+ T cells, cDC1s were required for CD4+ T cell expansion and gut homing. cDC1s were also a major source of IL-12 that was not required for priming but promoted full differentiation of CD4+ T cells and local production of IFN-{gamma}. Together, these studies reveal distinct roles for cDC1s in shaping CD4+ T cell responses to enteric infection: first to drive early expansion in the mesLN and second to drive effector responses in the gut. SummaryCryptosporidium parasites that express model antigens were generated to dissect how parasite-specific CD4+ T cells are primed and mediate effector functions required to control this enteric pathogen. cDC1s produced IL-12p40 and were required for early expansion and gut homing of CD4+ T cells. However, IL-12p40 was only required for the development of Th1 CD4+ T cell effector function in the gut.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Toxoplasma gondii GRA28 is required for placenta-specific induction of the regulatory chemokine CCL22 in human and mouse. 95%
- Insulinase like protease 1 contributes to macrogamont formation in Cryptosporidium parvum 95%
- Acute malaria dysregulates specialized lymph node macrophages to suppress vaccine-elicited protection against Ebola virus 95%
Similar papers in this journal
- Naïve CD8 T cell IFNγ responses to a vacuolar antigen are regulated by an inflammasome-independent NLRP3 pathway and Toxoplasma gondii ROP5 96%
- ILC1-derived IFN-gamma mediates cDC1-dependent host resistance against Toxoplasma gondii 96%
- Cell-intrinsic IL4R alpha independence of large intestinal RELMα+ Ym1+ macrophages 96%
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 95%
- CXCR6 promotes dermal CD8+ T cell survival and transition to long-term tissue residence 95%
Similar papers in this journal
- Cytotoxic CD4+ T cells driven by T-cell intrinsic IL-18R/MyD88 signaling predominantly infiltrate Trypanosoma cruzi-infected hearts 96%
- Plasmodium infection disrupts the T follicular helper cell response to heterologous immunization 96%
- Over-expression Screen of Interferon-Stimulated Genes Identifies RARRES3 as a Restrictor of Toxoplasma gondii Infection 95%
Similar papers in this journal
- Brain endothelial STING1 activation by Plasmodium-sequestered heme promotes cerebral malaria via type I IFN response. 95%
- The apicoplast is important for the viability and persistence of Toxoplasma gondii bradyzoites 95%
- OCA-B/Pou2af1 is sufficient to promote CD4+ T cell memory and prospectively identifies memory precursors 94%
"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.