Literature DB >> 7923632

Chloride dependence of pH modulation by beta-adrenergic agonist in rat cardiomyocytes.

M Désilets1, M Pucéat, G Vassort.   

Abstract

The effects of beta-adrenergic agonists on pHi were studied on single ventricular myocytes isolated from adult rat heart and loaded with the acetoxymethyl ester (AM) form of the pH indicator SNARF-1. In modified Krebs' solution containing 20 mmol/L HEPES and 4.4 mmol/L HCO3-, isoproterenol (1 mumol/L) caused a significant decrease of steady-state pHi from 7.20 +/- 0.02 to 7.13 +/- 0.02 (mean +/- SEM) within 2 minutes. This acidification, which was also observed in myocytes that were preloaded with the Ca2+ chelator BAPTA and superfused with nominally Ca(2+)-free solution, was blocked by propranolol as well as by the specific beta 1-antagonist CGP 20712 A but not by the beta 2-antagonist ICI 118,551. Forskolin (10 mumol/L) induced a similar reversible decrease of pHi (average decrease, 0.11 +/- 0.02 pH unit). Furthermore, adenosine (100 mumol/L) substantially attenuated the isoproterenol-induced decrease of pHi. The effect of isoproterenol was not prevented by inhibitors of the Na(+)-H+ antiport, amiloride (1 mmol/L) and 2-N,N-hexamethylene amiloride (20 mumol/L). On the other hand, blockers of Cl- transport mechanisms, DIDS (200 mumol/L) and probenecid (100 mumol/L), inhibited this acidification, Isoproterenol also failed to induce a decrease of steady-state pHi in myocytes incubated in Cl(-)-free medium. Rather, the initial rate of rise of pHi observed on removal of external Cl- ions was significantly increased in the presence of isoproterenol or dibutyryl cAMP. Because the alkalinization induced by removal of Cl- ions is mainly due to reversal of the Cl(-)-HCO3- exchanger, the augmentation of this initial rate of pHi rise directly points to a beta-adrenergic stimulation of the exchanger. Furthermore, the pHi recovery following NH4Cl exposure was accelerated by isoproterenol in the presence of probenecid, indicating that the Na(+)-HCO3- cotransport and/or the Na(+)-H+ antiport also could be activated.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1994        PMID: 7923632     DOI: 10.1161/01.res.75.5.862

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  8 in total

Review 1.  Functional and cellular regulation of the myocardial Na+/H+ exchanger.

Authors:  L Fliegel
Journal:  J Thromb Thrombolysis       Date:  1999-07       Impact factor: 2.300

2.  Transport activity of AE3 chloride/bicarbonate anion-exchange proteins and their regulation by intracellular pH.

Authors:  D Sterling; J R Casey
Journal:  Biochem J       Date:  1999-11-15       Impact factor: 3.857

3.  Characterization of intracellular pH regulation in the guinea-pig ventricular myocyte.

Authors:  C H Leem; D Lagadic-Gossmann; R D Vaughan-Jones
Journal:  J Physiol       Date:  1999-05-15       Impact factor: 5.182

Review 4.  The role of Na+/H+ exchange in ischemia-reperfusion.

Authors:  H M Piper; C Balser; Y V Ladilov; M Schäfer; B Siegmund; M Ruiz-Meana; D Garcia-Dorado
Journal:  Basic Res Cardiol       Date:  1996 May-Jun       Impact factor: 17.165

5.  Sarcolemmal mechanisms for pHi recovery from alkalosis in the guinea-pig ventricular myocyte.

Authors:  C H Leem; R D Vaughan-Jones
Journal:  J Physiol       Date:  1998-06-01       Impact factor: 5.182

6.  Monitoring intracellular pH changes in response to osmotic stress and membrane transport activity using 5-chloromethylfluorescein.

Authors:  Aline Salvi; J Mark Quillan; Wolfgang Sadée
Journal:  AAPS PharmSci       Date:  2002

7.  Loss-of-activity-mutation in the cardiac chloride-bicarbonate exchanger AE3 causes short QT syndrome.

Authors:  Kasper Thorsen; Vibeke S Dam; Kasper Kjaer-Sorensen; Lisbeth N Pedersen; V Arvydas Skeberdis; Jonas Jurevičius; Rimantas Treinys; Ida M B S Petersen; Morten S Nielsen; Claus Oxvig; J Preben Morth; Vladimir V Matchkov; Christian Aalkjær; Henning Bundgaard; Henrik K Jensen
Journal:  Nat Commun       Date:  2017-11-22       Impact factor: 14.919

8.  Src family tyrosine kinase regulates intracellular pH in cardiomyocytes.

Authors:  M Pucéat; S Roche; G Vassort
Journal:  J Cell Biol       Date:  1998-06-29       Impact factor: 10.539

  8 in total

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