Early life γδT cell activation enforces intestinal barrier integrity during intergenerational C. difficile colonization
Thurairajah, B.; Westfall, S.; Chiggiato, L.; Keogh, L.; Sinha, A.; Olsen, K.; Tafesse, Y.; Lypaczewski, P.; Fontes, G.; Shapiro, B. J.; Cousineau, B.; Gruenheid, S.; Vermijlen, D.; Castagner, B.; Saliba, A.-E.; King, I. L.
Show abstract
Early postnatal life is a highly dynamic period in which the intestine is inundated with billions of microbes that not only battle for colonization, but also strongly influence immune system function and long-term health. This brief period of development provides a window of opportunity to imprint resilience against disease, yet the intercellular dialogue that dictates tissue protection are only beginning to be discovered. By performing a kinetic analysis of immune cell activation in the colon of mice from early life to adulthood, we identified transient activation of a microbiota-dependent type 3 immune response during the weaning period. This response was characterized by a selective increase in IL-17 production by fetal-derived {gamma}{delta} T cells that occurred in an IL-1 receptor-dependent, cell-intrinsic manner. The subsequent differentiation of IL-10 producing Ror{gamma}t+ T regulatory cells extinguished IL-17 production by {gamma}{delta} T cells and prevented immunopathology. Microbial gain-of-function approaches determined that colonic {gamma}{delta} T cell activation occurred in response to passive acquisition of C. difficile at birth. In turn, IL-17 limited C. difficile growth and intestinal barrier breach by the commensal microbiota. Collectively, our results reveal how an agile immune cell network meets the demands of a maturing microbiota to support gut health during early life. Highlights- Colonic {gamma}{delta}17 T cells are activated during early life in a microbiota-specific manner - Fetal-derived {gamma}{delta}17 T cells require IL-1 signals for activation - Passive acquisition of C.difficile induces {gamma}{delta}17 T cell activation - IL-17 limits C. difficile growth and systemic dissemination of commensals
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Postnatal intestinal epithelial maturation by LSD1 controls the small intestinal immune cell composition independently from the microbiota 98%
- The Heterochromatin protein 1 is a master regulator in RNA splicing precision deficient in ulcerative colitis 97%
- Metformin enhances anti-mycobacterial responses by educating immunometabolic circuits of CD8+ T cells 96%
Similar papers in this journal
- A transmissible γδ intraepithelial lymphocyte hyperproliferative phenotype is associated with the intestinal microbiota and confers protection against acute infection. 98%
- Microbiota promote enhanced CD39 expression in γδ intraepithelial lymphocytes through the activation of TCR and IL-15 signaling 97%
- Regulatory T cells control the dynamic and site-specific polarization of CD4 T cells following Salmonella infection 97%
Similar papers in this journal
- Sex-dependent gastrointestinal colonization resistance to MRSA is microbiota and Th17 dependent 96%
- CXXC-finger protein 1 associates with FOXP3 to stabilize homeostasis and suppressive functions of regulatory T cells 96%
- Foxp3 depends on Ikaros for control of regulatory T cell gene expression and function 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.