Cell Host & Microbe
Volume 15, Issue 4, 9 April 2014, Pages 413-423
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Article
Plasmacytoid Dendritic Cells Mediate Anti-inflammatory Responses to a Gut Commensal Molecule via Both Innate and Adaptive Mechanisms

https://doi.org/10.1016/j.chom.2014.03.006Get rights and content
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Highlights

  • Plasmacytoid DCs are required for B. fragilis PSA-mediated protection against colitis

  • In vivo protection is induced by adoptive transfer of PDCs exposed to PSA in vitro

  • PSA-induced PDC immunoregulatory phenotype is TLR2 dependent

  • Cognate PDC-CD4+ T cell interactions are critical for PSA-mediated immunoregulation

Summary

Polysaccharide A (PSA), the archetypical immunomodulatory molecule of the gut commensal Bacteroides fragilis, induces regulatory T cells to secrete the anti-inflammatory cytokine interleukin-10 (IL-10). The cellular mediators of PSA’s immunomodulatory properties are incompletely understood. In a mouse model of colitis, we find that PSA requires both innate and adaptive immune mechanisms to generate protection. Plasmacytoid DCs (PDCs) exposed to PSA do not produce proinflammatory cytokines, but instead they specifically stimulate IL-10 secretion by CD4+ T cells and efficiently mediate PSA-afforded immunoprotection. PSA induces and preferentially ligates Toll-like receptor 2 on PDCs but not on conventional DCs. Compared with other TLR2 ligands, PSA is better at enhancing PDC expression of costimulatory molecules required for protection against colitis. PDCs can thus orchestrate the beneficial immunoregulatory interaction of commensal microbial molecules, such as PSA, through both innate and adaptive immune mechanisms.

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