4.8 Article

ICOS ligand and IL-10 synergize to promote host-microbiota mutualism

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2018278118

关键词

IL-10; ICOSL; microbiota; anti-commensal antibodies

资金

  1. NIH [DK118386]
  2. Crohn's and Colitis Foundation [558420]
  3. University of Alabama at Birmingham (UAB) Microbiome Center [T32 AI007051]
  4. Institutional Research and Academic Career Development Award [K12 GM088010]
  5. UAB Microbiome Resource: Comprehensive Cancer Center [P30 AR050948]
  6. Center for Clinical Translational Science [UL1 TR001417]
  7. University Wide Institutional Core, Heflin Center for Genomic Sciences
  8. UAB Microbiome Center

向作者/读者索取更多资源

ICOSLG gene is associated with inflammatory bowel disease susceptibility, playing a critical role in adaptive immune regulation of the microbiota in the large intestine through its partnership with IL-10. Deficiency of ICOSL leads to enrichment of IL-10-producing CD4 T cells and impaired antibody recognition of microbial antigens.
Genome-wide association studies have identified ICOSLG, which encodes the inducible costimulator ligand (ICOSLG or ICOSL) as a susceptibility locus for inflammatory bowel disease. ICOSL has been implicated in the enhancement of pattern recognition receptor signaling in dendritic cells, induction of IL-10 production by CD4 T cells, and the generation of high-affinity antibodies to specific antigens-all of which can potentially explain its involvement in gastrointestinal inflammation. Here, we show that murine ICOSL deficiency results in significant enrichment of IL-10-producing CD4 T cells particularly in the proximal large intestine. Transient depletion of IL-10-producing cells from adult ICOSL-deficientmice induced severe colonic inflammation that was prevented when mice were first treated with metronidazole. ICOSL-deficient mice displayed reduced IgA and IgG antibodies in the colon mucus and impaired serum antibody recognition of microbial antigens, including flagellins derived from mucus-associated bacteria of the Lachnospiraceae family. Confirming the synergy between ICOSL and IL-10, ICOSL deficiency coupled with CD4-specific deletion of the Il10 gene resulted in juvenile onset colitis that was impeded when pups were fostered by ICOSL-sufficient dams. In this setting, we found that both maternally acquired and host-derived antibodies contribute to the life anti-commensal antibody repertoire that mediates this protection in early life. Collectively, our findings reveal a partnership between ICOSL-dependent anti-commensal antibodies and IL-10 in adaptive immune regulation of the microbiota in the large intestine. Furthermore, we identify ICOSL deficiency as an effective platform for exploring the functions of anti-commensal antibodies in host-microbiota mutualism.

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