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Rapid and Rigorous IL-17A Production by a Distinct Subpopulation of Effector Memory T Lymphocytes Constitutes a Novel Mechanism of Toxic Shock Syndrome Immunopathology

  1. Author:
    Szabo, Peter A.
    Goswami, Ankur
    Mazzuca, Delfina M.
    Kim, Kyoungok
    O'Gorman, David B.
    Hess, David A.
    Welch, Ian D.
    Young, Howard
    Singh, Bhagirath
    McCormick, John K.
    Haeryfar, S. M. Mansour
  2. Author Address

    Western Univ, Dept Microbiol & Immunol, London, ON N6A 5C1, Canada.Western Univ, Roth McFarlane Hand & Upper Limb Ctr, Cell & Mol Biol Lab, London, ON N6A 4V2, Canada.Western Univ, Dept Biochem, London, ON N6A 5C1, Canada.Lawson Hlth Res Inst, London, ON N6C 2R5, Canada.Western Univ, Dept Surg, London, ON N6A 4V2, Canada.Western Univ, Dept Physiol & Pharmacol, London, ON N6A 5C1, Canada.Robarts Res Inst, Mol Med Res Grp, Krembil Ctr Stem Cell Biol, London, ON N6A 5B7, Canada.Univ British Columbia, Dept Pathol & Lab Med, Vancouver, BC V6T 2B5, Canada.Natl Canc Inst Frederick, Canc & Inflammat Program, Ctr Canc Res, Frederick, MD 21702 USA.Western Univ, Ctr Human Immunol, London, ON N6A 5C1, Canada.Western Univ, Div Clin Immunol & Allergy, Dept Med, London, ON N6A 5A5, Canada.
    1. Year: 2017
    2. Date: Apr 1
    3. Epub Date: 2017 Mar 20
  1. Journal: JOURNAL OF IMMUNOLOGY
  2. AMER ASSOC IMMUNOLOGISTS,
    1. 198
    2. 7
    3. Pages: 2805-2818
  3. Type of Article: Article
  4. ISSN: 0022-1767
  1. Abstract:

    Toxic shock syndrome (TSS) is caused by staphylococcal and streptococcal superantigens (SAgs) that provoke a swift hyperinflammatory response typified by a cytokine storm. The precipitous decline in the host's clinical status and the lack of targeted therapies for TSS emphasize the need to identify key players of the storm's initial wave. Using a humanized mouse model of TSS and human cells, we herein demonstrate that SAgs elicit in vitro and in vivo IL-17A responses within hours. SAg-triggered human IL-17A production was characterized by remarkably high mRNA stability for this cytokine. A distinct subpopulation of CD4(+) effector memory T (TEM) cells that secrete IL-17A, but not IFN-gamma, was responsible for early IL-17A production. We found mouse '' T(EM)17 '' cells to be enriched within the intestinal epithelium and among lamina propria lymphocytes. Furthermore, interfering with IL-17A receptor signaling in human PBMCs attenuated the expression of numerous inflammatory mediators implicated in the TSS-associated cytokine storm. IL-17A receptor blockade also abrogated the secondary effect of SAg-stimulated PBMCs on human dermal fibroblasts as judged by C/EBP delta expression. Finally, the early IL-17A response to SAgs was pathogenic because in vivo neutralization of IL-17A in humanized mice ameliorated hepatic and intestinal damage and reduced mortality. Together, our findings identify CD4(+) TEM cells as a key effector of TSS and reveal a novel role for IL-17A in TSS immunopathogenesis. Our work thus elucidates a pathogenic, as opposed to protective, role for IL-17A during Gram-positive bacterial infections. Accordingly, the IL-17-IL-17R axis may provide an attractive target for the management of SAg-mediated illnesses.

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External Sources

  1. DOI: 10.4049/jimmunol.1601366
  2. PMID: 28219889
  3. WOS: 000397611900028

Library Notes

  1. Fiscal Year: FY2016-2017
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