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The Pathogen Recognition Receptor NOD2 Regulates Human FOXP3+ T Cell Survival

Rahman M, Midtling E, Svingen P +6 more2010The Journal of ImmunologyJournal Article
10.4049/jimmunol.0901479PubMedFree full text
GastrointestinalImmune/Innate
Bacterial Endotoxins

Abstract

Abstract The expression of pathogen recognition receptors in human FOXP3+ T regulatory cells is established, yet the function of these receptors is currently obscure. In the process of studying the function of both peripheral and lamina propria FOXP3+ lymphocytes in patients with the human inflammatory bowel disease Crohn’s disease, we observed a clear deficiency in the quantity of FOXP3+ lymphocytes in patients with disease-associated polymorphisms in the pathogen recognition receptor gene NOD2. Subsequently, we determined that the NOD2 ligand, muramyl dipeptide (MDP), activates NF-κB in primary human FOXP3+ T cells. This activation is functionally relevant, as MDP-stimulated human FOXP3+ T cells are protected from death receptor Fas-mediated apoptosis. Importantly, apoptosis protection was not evident in MDP-stimulated FOXP3+ T cells isolated from a patient with the disease-associated polymorphism. Thus, we propose that one function of pathogen recognition receptors in human T regulatory cells is the protection against death receptor-mediated apoptosis in a Fas ligand-rich environment, such as that of the inflamed intestinal subepithelial space.

Key Biomarkers

Fas-mediated apoptosisFOXP3+ T regulatory cellsMuramyl dipeptide (MDP)NF-κB activationNOD2 polymorphisms

Symptom Clusters

Crohn's diseaseInflammatory bowel disease

References (1)

  • Reduced frequencies and suppressive function of CD4+CD25hi regulatory T cells in patients with chronic lymphocytic leukemia after therapy with fludarabineBlood · 2005

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