Targeting gut T cell Ca2+ release-activated Ca2+ channels inhibits T cell cytokine production and T-box transcription factor T-bet in inflammatory bowel disease.
Articolo
Data di Pubblicazione:
2009
Abstract:
Prolonged Ca(2+) entry through Ca(2+) release-activated Ca(2+) (CRAC) channels is crucial in activating the Ca(2+)-sensitive transcription factor NFAT, which is responsible for directing T cell proliferation and cytokine gene expression. To establish whether targeting CRAC might counteract intestinal inflammation, we evaluated the in vitro effect of a selective CRAC inhibitor on T cell cytokine production and T-bet expression by lamina propria mononuclear cells (LPMC) and biopsy specimens from inflammatory bowel disease (IBD) patients. The inhibitory activity of the CRAC blocker was investigated through patch-clamp experiments on rat basophilic leukemia cells and fluorometric imaging plate reader intracellular Ca(2+) assays using thapsigargin-stimulated Jurkat T cells and its detailed selectivity profile defined using a range of in vitro radioligand binding and functional assays. Anti-CD3/CD28-stimulated LPMC and biopsy specimens from 51 patients with IBD were cultured with a range of CRAC inhibitor concentrations (0.01-10 microM). IFN-gamma, IL-2, IL-8, and IL-17 were analyzed by ELISA. T-bet was determined by immunoblotting. We found that the CRAC blocker concentration-dependently inhibited CRAC current in rat basophilic leukemia cells and thapsigargin-induced Ca(2+) influx in Jurkat T cells. A concentration-dependent reduction in T-bet expression and production of IFN-gamma, IL-2, IL-17, but not IL-8, was observed in IBD LPMC and biopsy specimens treated with the CRAC inhibitor. In conclusion, we provide evidence that the suppression of CRAC channel function may dampen the increased T cell response in the inflamed gut, thus suggesting a promising role for CRAC inhibitor drugs in the therapeutic management of patients with IBD.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Adult, Aged, Animals, Calcium Channel Blockers; pharmacology, Calcium Channels; metabolism, Cell Line; Tumor, Cytokines; antagonists /&/ inhibitors/biosynthesis, Humans, Inflammatory Bowel Diseases; immunology/metabolism/pathology, Intestinal Mucosa; immunology/metabolism/pathology, Jurkat Cells, Middle Aged, Organ Culture Techniques, Patch-Clamp Techniques, Rats, T-Box Domain Proteins; antagonists /&/ inhibitors/physiology, T-Lymphocyte Subsets; immunology/metabolism/pathology, Young Adult
Elenco autori:
A. D., Sabatino; Rovedatti, Laura; R., Kaur; J. P., Spencer; J. T., Brown; V. D., Morisset; Biancheri, Paolo; N. A., B.; J. I., Wilde; L., Scott; Corazza, GINO ROBERTO; K., Lee; N., Sengupta; C. H., Knowles; M. J., Gunthorpe; P. G., Mclean; T. T., Macdonald; L., Kruidenier
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