IL-33 drives group 2 innate lymphoid cell-mediated protection during Clostridium difficile infection

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作者
Alyse L. Frisbee
Mahmoud M. Saleh
Mary K. Young
Jhansi L. Leslie
Morgan E. Simpson
Mayuresh M. Abhyankar
Carrie A. Cowardin
Jennie Z. Ma
Patcharin Pramoonjago
Stephen D. Turner
Alice P. Liou
Erica L. Buonomo
William A. Petri
机构
[1] University of Virginia Health System,Department of Microbiology, Immunology and Cancer Biology
[2] University of Virginia Health System,Department of Medicine
[3] University of Virginia Health System,Department of Pathology
[4] University of Virginia School of Medicine,Department of Public Health Sciences
[5] Seres Therapeutics,undefined
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Clostridium difficile (C. difficile) incidence has tripled over the past 15 years and is attributed to the emergence of hypervirulent strains. While it is clear that C. difficile toxins cause damaging colonic inflammation, the immune mechanisms protecting from tissue damage require further investigation. Through a transcriptome analysis, we identify IL-33 as an immune target upregulated in response to hypervirulent C. difficile. We demonstrate that IL-33 prevents C. difficile-associated mortality and epithelial disruption independently of bacterial burden or toxin expression. IL-33 drives colonic group 2 innate lymphoid cell (ILC2) activation during infection and IL-33 activated ILC2s are sufficient to prevent disease. Furthermore, intestinal IL-33 expression is regulated by the microbiota as fecal microbiota transplantation (FMT) rescues antibiotic-associated depletion of IL-33. Lastly, dysregulated IL-33 signaling via the decoy receptor, sST2, predicts C. difficile-associated mortality in human patients. Thus, IL-33 signaling to ILC2s is an important mechanism of defense from C. difficile colitis.
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