Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.

Although the etiology of Crohn's disease (CD) remains elusive this disease is characterized by T cell activation that leads to chronic inflammation and mucosal damage. A potential role for maladaptation between the intestinal microbiota and the mucosal immune response is suggested by the fact t...

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Main Authors: Galliano Zanello, Ashleigh Goethel, Katharina Forster, Kaoru Geddes, Dana J Philpott, Kenneth Croitoru
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3855837?pdf=render
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spelling doaj-f020075c7baa462aa9b7f9377db191e32020-11-24T22:16:55ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8262310.1371/journal.pone.0082623Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.Galliano ZanelloAshleigh GoethelKatharina ForsterKaoru GeddesDana J PhilpottKenneth CroitoruAlthough the etiology of Crohn's disease (CD) remains elusive this disease is characterized by T cell activation that leads to chronic inflammation and mucosal damage. A potential role for maladaptation between the intestinal microbiota and the mucosal immune response is suggested by the fact that mutations in the pattern recognition receptor Nod2 are associated with higher risks for developing CD. Although Nod2 deletion in CD4(+) T cells has been shown to impair the induction of colitis in the murine T cell transfer model, the analysis of T cell intrinsic Nod2 function in T cell differentiation and T cell-mediated immunity is inconsistent between several studies. In addition, the role of T cell intrinsic Nod2 in regulatory T cell (Treg) development and function during colitis remain to be analyzed. In this study, we show that Nod2 expression is higher in activated/memory CD4(+) T cells and its expression was inducible after T cell receptor (TCR) ligation. Nod2 stimulation with muramyl dipeptide (MDP) led to a nuclear accumulation of c-Rel NF-kB subunit. Although functionally active in CD4(+) T cells, the deletion of Nod2 did not impair the induction and the prevention of colitis in the T cell transfer model. Moreover, Nod2 deletion did not affect the development of Foxp3(+) Treg cells in the spleen of recipient mice and Nod2 deficient CD4 T cells expressing the OVA specific transgenic TCR were able to differentiate in Foxp3(+) Treg cells after OVA feeding. In vitro, CD25(+) Nod2 deficient T cells suppressed T cell proliferation as well as wild type counter parts and T cell stimulation with MDP did not affect the proliferation and the cytokine secretion of T cells. In conclusion, our data indicate that Nod2 is functional in murine CD4(+) T cells but its expression is dispensable for the T cell regulation of colitis.http://europepmc.org/articles/PMC3855837?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Galliano Zanello
Ashleigh Goethel
Katharina Forster
Kaoru Geddes
Dana J Philpott
Kenneth Croitoru
spellingShingle Galliano Zanello
Ashleigh Goethel
Katharina Forster
Kaoru Geddes
Dana J Philpott
Kenneth Croitoru
Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.
PLoS ONE
author_facet Galliano Zanello
Ashleigh Goethel
Katharina Forster
Kaoru Geddes
Dana J Philpott
Kenneth Croitoru
author_sort Galliano Zanello
title Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.
title_short Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.
title_full Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.
title_fullStr Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.
title_full_unstemmed Nod2 activates NF-kB in CD4+ T cells but its expression is dispensable for T cell-induced colitis.
title_sort nod2 activates nf-kb in cd4+ t cells but its expression is dispensable for t cell-induced colitis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Although the etiology of Crohn's disease (CD) remains elusive this disease is characterized by T cell activation that leads to chronic inflammation and mucosal damage. A potential role for maladaptation between the intestinal microbiota and the mucosal immune response is suggested by the fact that mutations in the pattern recognition receptor Nod2 are associated with higher risks for developing CD. Although Nod2 deletion in CD4(+) T cells has been shown to impair the induction of colitis in the murine T cell transfer model, the analysis of T cell intrinsic Nod2 function in T cell differentiation and T cell-mediated immunity is inconsistent between several studies. In addition, the role of T cell intrinsic Nod2 in regulatory T cell (Treg) development and function during colitis remain to be analyzed. In this study, we show that Nod2 expression is higher in activated/memory CD4(+) T cells and its expression was inducible after T cell receptor (TCR) ligation. Nod2 stimulation with muramyl dipeptide (MDP) led to a nuclear accumulation of c-Rel NF-kB subunit. Although functionally active in CD4(+) T cells, the deletion of Nod2 did not impair the induction and the prevention of colitis in the T cell transfer model. Moreover, Nod2 deletion did not affect the development of Foxp3(+) Treg cells in the spleen of recipient mice and Nod2 deficient CD4 T cells expressing the OVA specific transgenic TCR were able to differentiate in Foxp3(+) Treg cells after OVA feeding. In vitro, CD25(+) Nod2 deficient T cells suppressed T cell proliferation as well as wild type counter parts and T cell stimulation with MDP did not affect the proliferation and the cytokine secretion of T cells. In conclusion, our data indicate that Nod2 is functional in murine CD4(+) T cells but its expression is dispensable for the T cell regulation of colitis.
url http://europepmc.org/articles/PMC3855837?pdf=render
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