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PMID: 2154753 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Apparent hydroxyl radical production by peroxynitrite: implications for endothelial injury from nitric oxide and superoxide.

Beckman JS, Beckman TW, Chen J, Marshall PA, Freeman BA

Abstract

Superoxide dismutase reduces injury in many disease processes, implicating superoxide anion radical (O2-.) as a toxic species in vivo. A critical target of superoxide may be nitric oxide (NO.) produced by endothelium, macrophages, neutrophils, and brain synaptosomes. Superoxide and NO. are known to rapidly react to form the stable peroxynitrite anion (ONOO-). We have shown that peroxynitrite has a pKa of 7.49 +/- 0.06 at 37 degrees C and rapidly decomposes once protonated with a half-life of 1.9 sec at pH 7.4. Peroxynitrite decomposition generates a strong oxidant with reactivity similar to hydroxyl radical, as assessed by the oxidation of deoxyribose or dimethyl sulfoxide. Product yields indicative of hydroxyl radical were 5.1 +/- 0.1% and 24.3 +/- 1.0%, respectively, of added peroxynitrite. Product formation was not affected by the metal chelator diethyltriaminepentaacetic acid, suggesting that iron was not required to catalyze oxidation. In contrast, desferrioxamine was a potent, competitive inhibitor of peroxynitrite-initiated oxidation because of a direct reaction between desferrioxamine and peroxynitrite rather than by iron chelation. We propose that superoxide dismutase may protect vascular tissue stimulated to produce superoxide and NO. under pathological conditions by preventing the formation of peroxynitrite.

MeSH Terms
Animals Endothelium, Vascular/drug effects,pathology Free Radicals Half-Life Hydrogen-Ion Concentration Hydroxides Hydroxyl Radical Kinetics Models, Biological Nitrates/chemical synthesis Nitric Oxide/toxicity Peroxides/chemical synthesis Superoxide Dismutase/metabolism,pharmacology Superoxides/toxicity
Chemicals
Free Radicals Hydroxides Nitrates Peroxides Superoxides Nitric Oxide Hydroxyl Radical Superoxide Dismutase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Beckman J S
Department of Anesthesiology, University of Alabama, Birmingham 35233.
Beckman T W
Chen J
Marshall P A
Freeman B A
References (25)
25 references, click to expand
  1. Synthesis of nitric oxide from L-arginine by neutrophils. Release and interaction with superoxide anion.
    Biochem J. 1989 Jul 1;261(1):293-6 PMID: 2549965
  2. Reactions of nitrogen dioxide in aqueous model systems: oxidation of tyrosine units in peptides and proteins.
    Arch Biochem Biophys. 1985 Nov 15;243(1):125-34 PMID: 4062299
  3. Macrophage oxidation of L-arginine to nitrite and nitrate: nitric oxide is an intermediate.
    Biochemistry. 1988 Nov 29;27(24):8706-11 PMID: 3242600
  4. Formation of thiobarbituric-acid-reactive substance from deoxyribose in the presence of iron salts: the role of superoxide and hydroxyl radicals.
    FEBS Lett. 1981 Jun 15;128(2):347-52 PMID: 6266877
  5. Vascular endothelial cells synthesize nitric oxide from L-arginine.
    Nature. 1988 Jun 16;333(6174):664-6 PMID: 3131684
  6. Mechanisms of nitrogen dioxide reactions: initiation of lipid peroxidation and the production of nitrous Acid.
    Science. 1981 Oct 23;214(4519):435-7 PMID: 17730242
  7. Endothelium-derived relaxant factor inhibits platelet activation.
    Naunyn Schmiedebergs Arch Pharmacol. 1987 Nov;336(5):566-71 PMID: 2830546
  8. A rapid, widely applicable screen for drugs that suppress free radical formation in ischemia/reperfusion.
    J Pharmacol Methods. 1988 Dec;20(4):335-45 PMID: 2850410
  9. Biological effects of the superoxide radical.
    Arch Biochem Biophys. 1986 May 15;247(1):1-11 PMID: 3010872
  10. The ability of scavengers to distinguish OH. production in the iron-catalyzed Haber-Weiss reaction: comparison of four assays for OH.
    Free Radic Biol Med. 1987;3(1):33-9 PMID: 3040537
  11. Oxygen-derived free radicals, endothelium, and responsiveness of vascular smooth muscle.
    Am J Physiol. 1986 May;250(5 Pt 2):H815-21 PMID: 3085520
  12. Comparison of superoxide with other reducing agents in the biological production of hydroxyl radicals.
    Biochem J. 1979 Aug 15;182(2):625-8 PMID: 41521
  13. Formation of nitric oxide from L-arginine in the central nervous system: a transduction mechanism for stimulation of the soluble guanylate cyclase.
    Proc Natl Acad Sci U S A. 1989 Jul;86(13):5159-62 PMID: 2567995
  14. Direct measurement of free radical generation following reperfusion of ischemic myocardium.
    Proc Natl Acad Sci U S A. 1987 Mar;84(5):1404-7 PMID: 3029779
  15. Superoxide anion release by human endothelial cells: synergism between a phorbol ester and a calcium ionophore.
    J Cell Physiol. 1986 May;127(2):207-10 PMID: 3009494
  16. Permeation of the erythrocyte stroma by superoxide radical.
    J Biol Chem. 1978 Jul 10;253(13):4697-9 PMID: 207707
  17. Arginine is a physiological precursor of endothelium-derived nitric oxide.
    Eur J Pharmacol. 1988 Sep 13;154(2):213-6 PMID: 3265919
  18. Nitrogen dioxide-induced changes in cell membrane fluidity and function.
    Am Rev Respir Dis. 1986 Dec;134(6):1196-202 PMID: 3789519
  19. Anoxia and endothelium-dependent reactivity of the canine femoral artery.
    J Physiol. 1983 Feb;335:65-74 PMID: 6875896
  20. Superoxide anion is involved in the breakdown of endothelium-derived vascular relaxing factor.
    Nature. 1986 Apr 3-9;320(6061):454-6 PMID: 3007998
  21. Production of formaldehyde during metabolism of dimethyl sulfoxide by hydroxyl radical generating systems.
    Biochemistry. 1981 Oct 13;20(21):6006-12 PMID: 6272833
  22. The reaction of nitric oxide with copper proteins and the photodissociation of copper-NO complexes.
    Biochim Biophys Acta. 1987 Nov 5;916(1):38-47 PMID: 2822126
  23. Scatchard analysis of methane sulfinic acid production from dimethyl sulfoxide: a method to quantify hydroxyl radical formation in physiologic systems.
    Free Radic Biol Med. 1989;6(5):493-503 PMID: 2744582
  24. A spectrophotometric method for determination of catalase activity in small tissue samples.
    Anal Biochem. 1988 Oct;174(1):331-6 PMID: 3064653
  25. Endothelium-derived relaxing and contracting factors.
    FASEB J. 1989 Jul;3(9):2007-18 PMID: 2545495
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1990-02-00
Pages
1620-4
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC53527
Subset
IM
Grants
NINDS NIH HHS · NS 24275 · United States
NINDS NIH HHS · NS 24338 · United States
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