Literature DB >> 14615009

Ethanol increases phosphodiesterase 4 activity in bovine bronchial epithelial cells.

Mary A Forgèt1, Joseph H Sisson, John R Spurzem, Todd A Wyatt.   

Abstract

Ethanol exposure in airway epithelium increases cyclic AMP (cAMP)-dependent protein kinase (PKA) activity. Activation of PKA and cyclic guanosine monophosphate (cGMP)-dependent protein kinase (PKG) has been shown to increase ciliary beat frequency (CBF) in bovine bronchial epithelial cells (BBECs). We have shown that biologically relevant concentrations of ethanol stimulate increases in CBF in a nitric oxide-dependent manner, mediated through elevated cAMP levels and subsequent PKA activation. This ethanol-driven rapid and transient increase in CBF occurs 15 to 30 min after exposure to 100 mM ethanol. However, after prolonged exposure to 100 mM ethanol (>/=6 h), CBF and the catalytic activity of PKA return to baseline levels. We hypothesize that cyclic nucleotide-dependent phosphodiesterase (PDE) activity attenuates the duration of ethanol-stimulated ciliary motility. The effect of ethanol on the PDE activity in BBECs was determined through direct assay of catalytic activity. When BBECs were incubated with 100 mM ethanol, significant increases in cAMP levels occurred within 1 h, with corresponding increases in PKA activity. Treatment of BBECs with 100 mM ethanol increased cAMP-PDE activity significantly by 4 h. 3-Isobutyl-1-methylxanthine, Ro 20-1724, and rolipram inhibited ethanol-stimulated cAMP-PDE activity. These agents inhibited ethanol-stimulated cAMP-PDE activity and increased the magnitude of ethanol-stimulated PKA activity observed under the same conditions. These findings support the idea that acute exposure (<6 h) to ethanol increases cAMP levels, and the associated increase in PKA activation is regulated by cAMP-dependent PDE, specifically PDE4. Other compensatory mechanisms however, may be responsible for the down-regulation of PKA, which occurs after chronic epithelial exposure (>/=6 h) to ethanol.

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Year:  2003        PMID: 14615009     DOI: 10.1016/j.alcohol.2003.06.005

Source DB:  PubMed          Journal:  Alcohol        ISSN: 0741-8329            Impact factor:   2.405


  14 in total

1.  Chronic ethanol feeding suppresses beta-adrenergic receptor-stimulated lipolysis in adipocytes isolated from epididymal fat.

Authors:  Li Kang; Laura E Nagy
Journal:  Endocrinology       Date:  2006-06-22       Impact factor: 4.736

2.  Apremilast Alters Behavioral Responses to Ethanol in Mice: I. Reduced Consumption and Preference.

Authors:  Yuri A Blednov; Adriana J Da Costa; Tamara Tarbox; Olga Ponomareva; Robert O Messing; R Adron Harris
Journal:  Alcohol Clin Exp Res       Date:  2018-03-24       Impact factor: 3.455

3.  Inhibition of phosphodiesterase-4 decreases ethanol intake in mice.

Authors:  Wei Hu; Tina Lu; Alan Chen; Ying Huang; Rolf Hansen; L Judson Chandler; Han-Ting Zhang
Journal:  Psychopharmacology (Berl)       Date:  2011-04-21       Impact factor: 4.530

Review 4.  Alcohol and airways function in health and disease.

Authors:  Joseph H Sisson
Journal:  Alcohol       Date:  2007-08-30       Impact factor: 2.405

5.  Ethanol blocks adenosine uptake via inhibiting the nucleoside transport system in bronchial epithelial cells.

Authors:  Diane S Allen-Gipson; Justin C Jarrell; Kristina L Bailey; James E Robinson; Kusum K Kharbanda; Joseph H Sisson; Todd A Wyatt
Journal:  Alcohol Clin Exp Res       Date:  2009-03-06       Impact factor: 3.455

6.  Desensitization of PKA-stimulated ciliary beat frequency in an ethanol-fed rat model of cigarette smoke exposure.

Authors:  Todd A Wyatt; Martha J Gentry-Nielsen; Jacqueline A Pavlik; Joseph H Sisson
Journal:  Alcohol Clin Exp Res       Date:  2004-07       Impact factor: 3.455

7.  Ethanol stimulates ciliary beating by dual cyclic nucleotide kinase activation in bovine bronchial epithelial cells.

Authors:  Todd A Wyatt; Mary A Forgèt; Joseph H Sisson
Journal:  Am J Pathol       Date:  2003-09       Impact factor: 4.307

8.  Loss of cAMP-dependent stimulation of isolated cilia motility by alcohol exposure is oxidant-dependent.

Authors:  Michael E Price; Carresse L Gerald; Jacqueline A Pavlik; Sarah L Schlichte; Matthew C Zimmerman; Jane M DeVasure; Todd A Wyatt; Joseph H Sisson
Journal:  Alcohol       Date:  2018-10-03       Impact factor: 2.405

9.  Alcohol Decreases Organic Dust-Stimulated Airway Epithelial TNF-Alpha Through a Nitric Oxide and Protein Kinase-Mediated Inhibition of TACE.

Authors:  Carresse L Gerald; Debra J Romberger; Jane M DeVasure; Rohan Khazanchi; Tara M Nordgren; Art J Heires; Joseph H Sisson; Todd A Wyatt
Journal:  Alcohol Clin Exp Res       Date:  2016-02       Impact factor: 3.455

10.  Suppression of adenosine-activated chloride transport by ethanol in airway epithelia.

Authors:  Sammeta V Raju; Guoshun Wang
Journal:  PLoS One       Date:  2012-03-19       Impact factor: 3.240

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