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1.
Hum Immunol ; 74(2): 145-50, 2013 Feb.
Article de Anglais | MEDLINE | ID: mdl-23137876

RÉSUMÉ

Estimates of T regulatory cell populations in the periphery of patients with Crohn's disease are confounded by disease activity and concomitant immunotherapeutic agents known to affect T cell proliferation and survival. We performed deuterium pulse/chase experiments in patients with quiescent Crohn's disease on no immunotherapy and healthy control subjects to estimate T regulatory cell kinetics. Quantification of deuterated DNA isolated from T cell subsets over 10 days was determined by mass spectrophotometry. We demonstrate enhanced proliferation within the T regulatory cell population from patients with Crohn's disease when compared to non-T regulatory cells and T regulatory cells from healthy control subjects. We speculate that T regulatory cells isolated from the periphery of patients with Crohn's disease experience persistent antigen stimulation resulting in excess proliferative rates.


Sujet(s)
Maladie de Crohn/immunologie , Lymphocytes T régulateurs/immunologie , Adulte , Sujet âgé , Apoptose/immunologie , Glycémie , Études cas-témoins , Maladie de Crohn/métabolisme , Femelle , Humains , Mémoire immunologique , Activation des lymphocytes/immunologie , Mâle , Adulte d'âge moyen , Lymphocytes T régulateurs/métabolisme , Jeune adulte
2.
J Immunol ; 184(12): 7247-56, 2010 Jun 15.
Article de Anglais | MEDLINE | ID: mdl-20483763

RÉSUMÉ

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-kappaB 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.


Sujet(s)
Apoptose/immunologie , Maladie de Crohn/immunologie , Facteurs de transcription Forkhead/immunologie , Protéine adaptatrice de signalisation NOD2/immunologie , Sous-populations de lymphocytes T/immunologie , Lymphocytes T régulateurs/immunologie , Apoptose/génétique , Technique de Western , Séparation cellulaire , Survie cellulaire , Maladie de Crohn/génétique , Test ELISA , Femelle , Cytométrie en flux , Facteurs de transcription Forkhead/métabolisme , Génotype , Humains , Immunohistochimie , Muqueuse intestinale/immunologie , Muqueuse intestinale/métabolisme , Mâle , Adulte d'âge moyen , Protéine adaptatrice de signalisation NOD2/génétique , Protéine adaptatrice de signalisation NOD2/métabolisme , Polymorphisme de nucléotide simple , Petit ARN interférent , RT-PCR , Sous-populations de lymphocytes T/métabolisme , Lymphocytes T régulateurs/métabolisme , Transfection
3.
J Immunol ; 179(3): 1893-900, 2007 Aug 01.
Article de Anglais | MEDLINE | ID: mdl-17641056

RÉSUMÉ

Although functionally relevant TLRs can be expressed on human T regulatory (Treg) cells, little is known about the transcriptional control of their expression. We hypothesized that the transcription factor forkhead box P3 (FOXP3) regulates the expression of TLR family members in human Treg cells. Using primary human T cells and a reporter assay in Jurkat T cell lines, we dissected the regulation of TLR10, a TLR highly expressed in human Treg cells. We determined that TLR10 was expressed in human Treg cells through quantitative PCR, Western blotting, and flow cytometry. DNA binding of FOXP3 to a suspected cis-regulatory region in proximity to the transcription start site of TLR10 was established through EMSA and chromatin immunoprecipitation. Transcriptional control of TLR10 by FOXP3 was determined through luciferase reporter assays in Jurkat T cell lines. Relevance of FOXP3 to TLR10 gene transcription in primary T cells was established through the transfection of primary CD4(+)CD25(-)FOXP3(-) T cells with a FOXP3 expression vector, which resulted in prompt production of TLR10 mRNA. Enhanced expression of TLR10 protein in primary Treg cells was induced in a calcium-dependent fashion through TCR activation. The suspected promotional cooperation between FOXP3 and NF-AT was established in the abolition of the luciferase signal upon transfection of a mutant FOXP3 devoid of NF-AT-binding activity. These results suggest that human Treg cells express TLR10, and this expression is regulated through a cooperative complex of FOXP3 and NF-AT.


Sujet(s)
Facteurs de transcription Forkhead/physiologie , Régulation de l'expression des gènes/immunologie , Lymphocytes T régulateurs/immunologie , Lymphocytes T régulateurs/métabolisme , Récepteur de type Toll-10/biosynthèse , Récepteur de type Toll-10/génétique , Séquence consensus/immunologie , Facteurs de transcription Forkhead/métabolisme , Humains , Cellules Jurkat , Facteurs de transcription NFATC/métabolisme , Facteurs de transcription NFATC/physiologie , Régions promotrices (génétique)/immunologie , Liaison aux protéines/immunologie , Site d'initiation de la transcription , Activation de la transcription/immunologie
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