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Cyclic AMP enhances progesterone action in human myometrial cells
Authors:Li Chen  Kaiyu Lei  Johann Malawana  Angela Yulia  Suren R Sooranna  Phillip R Bennett  Zhiqing Liang  Dimitri Grammatopoulos  Mark R Johnson
Institution:1. Imperial College Parturition Research Group, Academic Department of Obstetrics & Gynaecology, Imperial College School of Medicine, Chelsea and Westminster Hospital, 369 Fulham Road, London SW10 9NH, UK;2. Department of Obstetrics and Gynecology, Third Military Medical University Southwest Hospital, Chongqing 400038, PR China;3. Division of Metabolic and Vascular Health, Warwick Medical School, The University of Warwick, Gibbet Hill Road, Coventry CV4 7AL, UK
Abstract:Cyclic AMP (cAMP) has been shown to promote progesterone and glucocorticoid action in a variety of cellular settings. In this study, we have used human myometrial cells to investigate whether cAMP potentiates the ability of progesterone to repress IL-1β-driven COX-2 expression. We found that forskolin enhanced progesterone-repression of IL-1β-driven COX-2 expression in association with delayed IL-1β-induced nuclear phospho-p65 entry and reduced NF-κB binding to the COX-2 promoter. Further, forskolin enhanced the progesterone-induced expression of FKBP5 and 11βHSD1, progesterone-driven activity of a progesterone response element (PRE) and progesterone receptor (PR)-B binding to a transfected PRE. In addition, forskolin treatment increased PR-B levels and reduced the PR-A:PR-B ratio while acutely decreasing the association between PR and nuclear receptor co-repressor (NCoR) and reducing NCoR levels after 6 h. These findings are of importance in situations where enhancing progesterone activity is desirable, for example in the management of endometrial cancer, the promotion of endometrial receptivity or the maintenance of myometrial quiescence during pregnancy.
Keywords:cAMP  cyclic AMP  NCoR  nuclear receptor co-repressor  PR  progesterone receptor  PRE  progesterone response element  SMRT  silencing mediator for retinoid and thyroid hormone receptor
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