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FcαRI co-stimulation converts human intestinal CD103<sup>+</sup> dendritic cells into pro-inflammatory cells through glycolytic reprogramming.

Ivo S Hansen ,
Lisette Krabbendam ,
Jochem H Bernink ,
Fabricio Loayza-Puch ,
Willianne Hoepel ,
Johan A van Burgsteden ,
Elsa C Kuijper ,
Christianne J Buskens ,
Willem A Bemelman ,
Sebastiaan A J Zaat ,
Reuven Agami ,
Gestur Vidarsson ,
Gijs R van den Brink ,
Esther C de Jong ,
Manon E Wildenberg ,
Dominique L P Baeten ,
Bart Everts ,
Jeroen den Dunnen

Abstract

CD103+ dendritic cells (DC) are crucial for regulation of intestinal tolerance in humans. However, upon infection of the lamina propria this tolerogenic response is converted to an inflammatory response. Here we show that immunoglobulin A (IgA) immune complexes (IgA-IC), which are present after bacterial infection of the lamina propria, are important for the induction of inflammation by the human CD103+SIRPα+ DC subset. IgA-IC, by recognition through FcαRI, selectively amplify the production of proinflammatory cytokines TNF, IL-1β and IL-23 by human CD103+ DCs. These cells then enhance inflammation by promoting Th17 responses and activating human intestinal innate lymphoid cells 3. Moreover, FcαRI-induced cytokine production is orchestrated via upregulation of cytokine translation and caspase-1 activation, which is dependent on glycolytic reprogramming mediated by kinases Syk, PI3K and TBK1-IKKε. Our data suggest that the formation of IgA-IC in the human intestine provides an environmental cue for the conversion of a tolerogenic to an inflammatory response.

More about this publication

Nature communications

Volume 9
Issue nr. 1
Pages 863
Publication date 28-02-2018

Full text links

Publisher website (DOI) 10.1038/s41467-018-03318-5
Europe PubMed Central 29491406
Pubmed 29491406

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