Interleukin 10 controls the balance between tolerance, pathogen elimination and immunopathology in birds.
Meunier, D.; Corona-Torres, R.; Boulton, K.; Wu, Z.; Ballantyne, M.; Glendinning, L.; Ahmad, A. A.; Borowska, D.; Taylor, L.; Vervelde, L.; del Pozo, J.; Vasilogianni, M.; Jaramillo-Ortiz, J.; Sanchez-Arsuaga, G.; Psifidi, A.; Tomley, F.; Watson, K. A.; McGrew, M. J.; Stevens, M. P.; Blake, D. P.; Hume, D. A.
Show abstract
Effective mucosal immunity in the intestine involves a fine balance between tolerance of the microbiome, recognition and elimination of pathogens, and inflammatory tissue injury. The anti-inflammatory cytokine IL10 regulates these processes in the intestines of mice and humans; the anti-inflammatory activity of IL10 is also conserved in birds. To determine the function of IL10 in avian mucosal immunity, we generated germ line modifications of the chicken IL10 locus to abolish or reduce IL10 expression. In vitro analysis of macrophage response to lipopolysaccharide confirmed the loss of IL10 protein expression, the lack of dosage compensation in heterozygotes, and prevention of autocrine inhibition of nitric oxide production in homozygous IL10 knockout macrophages. IL10-deficiency significantly altered the composition of the caecal microbiome, but unlike IL10-deficient mice and humans, IL10-deficient chickens did not exhibit spontaneous colitis. Following experimental challenge with Salmonella enterica serovar Typhimurium or Campylobacter jejuni in IL10-deficient chickens, enhanced clearance of the pathogens was associated with elevated transcription of pro-inflammatory genes and increased infiltration of inflammatory cells into gut mucosa. In IL10-deficient chickens challenged with the parasite Eimeria tenella, pathogen clearance was accelerated but caecal lesions were more severe and weight gain was compromised. Neither the heterozygous IL10 knockout nor a homozygous IL10 enhancer mutation had a major effect on pathogen clearance or inflammation in any of the challenge models. Our findings highlight the intrinsic compromise in mucosal immune response and have important implications for the development of strategies to combat avian and zoonotic pathogens in poultry.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Mmp17-deficient mice exhibit heightened goblet cell effector expression in the colon and increased resistance to chronic Trichuris muris infection 94%
- Compensatory Mechanisms in γδ T Cell-Deficient Chickens Following Salmonella infection 94%
- Identification and phenotype of MAIT cells in cattle and their response to bacterial infections 93%
Similar papers in this journal
- Salmonella enterica serovar Typhimurium SPI-1 and SPI-2 shape the transcriptional landscape of epithelial cells in a human intestinal organoid model system 94%
- Intestinal inflammation reversibly alters the microbiota to drive susceptibility to Clostridioides difficile colonization in a mouse model of colitis 94%
- Modelling the gastrointestinal carriage of Klebsiella pneumoniae infections. 94%
Similar papers in this journal
- 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%
- Deficiency in Bhlhe40 impairs resistance to H. polygyrus bakeri and reveals novel Csf2rb-dependent regulation of anti-helminth immunity 94%
- NLRP1B and NLRP3 control the host response following colonization by the commensal protist Tritrichomonas musculis. 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.