Acetylcholine-producing T cells in the intestine regulate antimicrobial peptide expression and microbial diversity
Author(s) -
Shobhit Dhawan,
Giada De Palma,
Rose Willemze,
Francisca W. Hilbers,
Caroline Verseijden,
Misha Luyer,
Sabine Nuding,
Jan Wehkamp,
Yuri Souwer,
Esther C. de Jong,
Jurgen Seppen,
René M. van den Wijngaard,
Sven Wehner,
Elena F. Verdú,
Premek Bercik,
Wouter J. de Jonge
Publication year - 2016
Publication title -
ajp gastrointestinal and liver physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.644
H-Index - 169
eISSN - 1522-1547
pISSN - 0193-1857
DOI - 10.1152/ajpgi.00114.2016
Subject(s) - antimicrobial , antimicrobial peptides , acetylcholine , peptide , diversity (politics) , biology , microbiology and biotechnology , biochemistry , endocrinology , sociology , anthropology
The cholinergic anti-inflammatory pathway reduces systemic tumor necrosis factor (TNF) via acetylcholine-producing memory T cells in the spleen. These choline acetyltransferase (ChAT)-expressing T cells are also found in the intestine, where their function is unclear. We aimed to characterize these cells in mouse and human intestine and delineate their function. We made use of the ChAT-enhanced green fluorescent protein (eGFP) reporter mice. CD4 Cre mice were crossed to ChAT fl/fl mice to achieve specific deletion of ChAT in CD4 + T cells. We observed that the majority of ChAT-expressing T cells in the human and mouse intestine have characteristics of Th17 cells and coexpress IL17A, IL22, and RORC The generation of ChAT-expressing T cells was skewed by dendritic cells after activation of their adrenergic receptor β 2 To evaluate ChAT T cell function, we generated CD4-specific ChAT-deficient mice. CD4ChAT -/- mice showed a reduced level of epithelial antimicrobial peptides lysozyme, defensin A, and ang4, which was associated with an enhanced bacterial diversity and richness in the small intestinal lumen in CD4ChAT -/- mice. We conclude that ChAT-expressing T cells in the gut are stimulated by adrenergic receptor activation on dendritic cells. ChAT-expressing T cells may function to mediate the host AMP secretion, microbial growth and expansion.
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