Literature DB >> 8166235

Free radicals uncouple the sodium pump in pig coronary artery.

A B Elmoselhi1, A Butcher, S E Samson, A K Grover.   

Abstract

Free radicals may impair vital functions of several types of tissues including coronary artery smooth muscle. Because the Na+ pump plays a key role in maintaining coronary tone, the effects of superoxide and peroxide on this protein were examined. Ouabain-sensitive Rb+ uptake by denuded coronary artery rings was used in lieu of K+ transport by this pump. It was inhibited by exposing the rings for 90 min either to peroxide [50% inhibitory concentration (IC50) = 0.56 +/- 0.18 mM] or to superoxide generated by xanthine oxidase (XO; 0.3 mM xanthine and xanthine oxidase, IC50 = 0.08 +/- 02 mU/ml). The effect of peroxide was not overcome by superoxide dismutase and that of superoxide was not prevented by catalase. K(+)-activated ouabain-sensitive hydrolysis of p-nitrophenyl phosphate in the plasma membrane-enriched fraction isolated from the coronary artery smooth muscle was monitored as the hydrolytic activity of the Na+ pump. It was inhibited by exposing the membranes only to very high concentrations of peroxide (IC50 = 9.85 +/- 3.5 mM) or XO (IC50 = 5 +/- 2 mU/ml). The exposure to 2.5 mM H2O2 or 0.5 mU/ml XO reduced the Na(+)-dependent acylphosphate levels only by 41 +/- 3 and 30 +/- 4%, respectively even though either inhibited the Rb+ uptake by > 80%. Thus superoxide and peroxide uncoupled the hydrolytic activity of the Na+ pump from Rb+ uptake. We speculate that such an uncoupling in ischemia and reperfusion would result in dual damage: ion imbalance and continuous hydrolysis of ATP in the cells that are already starved.

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Year:  1994        PMID: 8166235     DOI: 10.1152/ajpcell.1994.266.3.C720

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  14 in total

1.  Photodynamic inactivation of the Na,K-ATPase occurs via different pathways.

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2.  Effects of peroxide on contractility of coronary artery rings of different sizes.

Authors:  A K Grover; S E Samson; C M Misquitta; A B Elmoselhi
Journal:  Mol Cell Biochem       Date:  1999-04       Impact factor: 3.396

3.  Predicted effects of nitric oxide and superoxide on the vasoactivity of the afferent arteriole.

Authors:  Anita T Layton; Aurélie Edwards
Journal:  Am J Physiol Renal Physiol       Date:  2015-07-15

Review 4.  Functional consequences of oxidative membrane damage.

Authors:  G Stark
Journal:  J Membr Biol       Date:  2005-05       Impact factor: 1.843

5.  Effects of peroxide on the fluorescence of the Ca2+ probe Fluo 3 and the pH probe BCECF.

Authors:  V Sandhu; M Miller; A K Grover
Journal:  Mol Cell Biochem       Date:  1998-01       Impact factor: 3.396

6.  Cellular mechanisms underlying nitric oxide-induced vasodilation of descending vasa recta.

Authors:  Aurélie Edwards; Chunhua Cao; Thomas L Pallone
Journal:  Am J Physiol Renal Physiol       Date:  2010-11-17

7.  Oral administration of L-arginine in patients with angina or following myocardial infarction may be protective by increasing plasma superoxide dismutase and total thiols with reduction in serum cholesterol and xanthine oxidase.

Authors:  Pratima Tripathi; M Chandra; Mithilesh K Misra
Journal:  Oxid Med Cell Longev       Date:  2009 Sep-Oct       Impact factor: 6.543

8.  Angiotensin II-induced hypertension increases plasma membrane Na pump activity by enhancing Na entry in rat thick ascending limbs.

Authors:  Agustin Gonzalez-Vicente; Jeffrey L Garvin
Journal:  Am J Physiol Renal Physiol       Date:  2013-08-28

9.  Effects of peroxide on endothelial nitric oxide synthase in coronary arteries.

Authors:  K A Shah; S E Samson; A K Grover
Journal:  Mol Cell Biochem       Date:  1998-06       Impact factor: 3.396

10.  Properties of the sarcoplasmic reticulum Ca(2+)-pump in coronary artery skinned smooth muscle.

Authors:  A B Elmoselhi; M Blennerhassett; S E Samson; A K Grover
Journal:  Mol Cell Biochem       Date:  1995-10-18       Impact factor: 3.396

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