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Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle

Endogenously released or exogenously administered glucocorticosteroids are relevant hormones for controlling inflammation. Only 11β-hydroxy glucocorticosteroids, but not 11-keto glucocorticosteroids, activate glucocorticoid receptors. Since we found that glomerular mesangial cells (GMC) express 11β-...

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Autores principales: Escher, Geneviève, Galli, Ivo, Vishwanath, Bannikuppe S., Frey, Brigitte M., Frey, Felix J.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2198986/
https://www.ncbi.nlm.nih.gov/pubmed/9221748
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author Escher, Geneviève
Galli, Ivo
Vishwanath, Bannikuppe S.
Frey, Brigitte M.
Frey, Felix J.
author_facet Escher, Geneviève
Galli, Ivo
Vishwanath, Bannikuppe S.
Frey, Brigitte M.
Frey, Felix J.
author_sort Escher, Geneviève
collection PubMed
description Endogenously released or exogenously administered glucocorticosteroids are relevant hormones for controlling inflammation. Only 11β-hydroxy glucocorticosteroids, but not 11-keto glucocorticosteroids, activate glucocorticoid receptors. Since we found that glomerular mesangial cells (GMC) express 11β-hydroxysteroid dehydrogenase 1 (11β-OHSD1), which interconverts 11-keto glucocorticosteroids into 11β-hydroxy glucocorticosteroids (cortisone/cortisol shuttle), we explored whether 11β-OHSD1 determines the antiinflammatory effect of glucocorticosteroids. GMC exposed to interleukin (IL)-1β or tumor necrosis factor α (TNF-α) release group II phospholipase A2 (PLA2), a key enzyme producing inflammatory mediators. 11β-hydroxy glucocorticosteroids inhibited cytokine-induced transcription and release of PLA2 through a glucocorticoid receptor–dependent mechanism. This inhibition was enhanced by inhibiting 11β-OHSD1. Interestingly, 11-keto glucocorticosteroids decreased cytokine-induced PLA2 release as well, a finding abrogated by inhibiting 11β-OHSD1. Stimulating GMC with IL-1β or TNF-α increased expression and reductase activity of 11β-OHSD1. Similarly, this IL-1β– and TNF-α–induced formation of active 11β-hydroxy glucocorticosteroids from inert 11-keto glucocorticosteroids by the 11β-OHSD1 was shown in the Kiki cell line that expresses the stably transfected bacterial β-galactosidase gene under the control of a glucocorticosteroids response element. Thus, we conclude that 11β-OHSD1 controls access of 11β-hydroxy glucocorticosteroids and 11-keto glucocorticosteroids to glucocorticoid receptors and thus determines the anti-inflammatory effect of glucocorticosteroids. IL-1β and TNF-α upregulate specifically the reductase activity of 11β-OHSD1 and counterbalance by that mechanism their own proinflammatory effect.
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spelling pubmed-21989862008-04-16 Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle Escher, Geneviève Galli, Ivo Vishwanath, Bannikuppe S. Frey, Brigitte M. Frey, Felix J. J Exp Med Article Endogenously released or exogenously administered glucocorticosteroids are relevant hormones for controlling inflammation. Only 11β-hydroxy glucocorticosteroids, but not 11-keto glucocorticosteroids, activate glucocorticoid receptors. Since we found that glomerular mesangial cells (GMC) express 11β-hydroxysteroid dehydrogenase 1 (11β-OHSD1), which interconverts 11-keto glucocorticosteroids into 11β-hydroxy glucocorticosteroids (cortisone/cortisol shuttle), we explored whether 11β-OHSD1 determines the antiinflammatory effect of glucocorticosteroids. GMC exposed to interleukin (IL)-1β or tumor necrosis factor α (TNF-α) release group II phospholipase A2 (PLA2), a key enzyme producing inflammatory mediators. 11β-hydroxy glucocorticosteroids inhibited cytokine-induced transcription and release of PLA2 through a glucocorticoid receptor–dependent mechanism. This inhibition was enhanced by inhibiting 11β-OHSD1. Interestingly, 11-keto glucocorticosteroids decreased cytokine-induced PLA2 release as well, a finding abrogated by inhibiting 11β-OHSD1. Stimulating GMC with IL-1β or TNF-α increased expression and reductase activity of 11β-OHSD1. Similarly, this IL-1β– and TNF-α–induced formation of active 11β-hydroxy glucocorticosteroids from inert 11-keto glucocorticosteroids by the 11β-OHSD1 was shown in the Kiki cell line that expresses the stably transfected bacterial β-galactosidase gene under the control of a glucocorticosteroids response element. Thus, we conclude that 11β-OHSD1 controls access of 11β-hydroxy glucocorticosteroids and 11-keto glucocorticosteroids to glucocorticoid receptors and thus determines the anti-inflammatory effect of glucocorticosteroids. IL-1β and TNF-α upregulate specifically the reductase activity of 11β-OHSD1 and counterbalance by that mechanism their own proinflammatory effect. The Rockefeller University Press 1997-07-21 /pmc/articles/PMC2198986/ /pubmed/9221748 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Escher, Geneviève
Galli, Ivo
Vishwanath, Bannikuppe S.
Frey, Brigitte M.
Frey, Felix J.
Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle
title Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle
title_full Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle
title_fullStr Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle
title_full_unstemmed Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle
title_short Tumor Necrosis Factor α and Interleukin 1β Enhance the Cortisone/Cortisol Shuttle
title_sort tumor necrosis factor α and interleukin 1β enhance the cortisone/cortisol shuttle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2198986/
https://www.ncbi.nlm.nih.gov/pubmed/9221748
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