OXOAMMONIUM CATION INTERMEDIATE IN THE NITROXIDE-CATALYZED DISMUTATION OF SUPEROXIDE

被引:328
作者
KRISHNA, MC
GRAHAME, DA
SAMUNI, A
MITCHELL, JB
RUSSO, A
机构
[1] NCI,DIV CANC TREATMENT,CLIN ONCOL PROGRAM,RADIAT ONCOL BRANCH,BLDG 10,ROOM B3 B69,BETHESDA,MD 20892
[2] NHLBI,BIOCHEM LAB,BETHESDA,MD 20892
[3] HEBREW UNIV JERUSALEM,SCH MED,IL-91010 JERUSALEM,ISRAEL
关键词
ELECTRON PARAMAGNETIC RESONANCE; HYDROGEN PEROXIDE; SUPEROXIDE RADICAL; SUPEROXIDE DISMUTASE; OXOAMMONIUM CATION;
D O I
10.1073/pnas.89.12.5537
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Dismutation of superoxide has been shown previously to be catalyzed by stable nitroxide compounds. In the present study, the mechanism of superoxide (.O2-) dismutation by various five-membered ring and six-membered ring nitroxides was studied by electron paramagnetic resonance spectrometry, UV-visible spectrophotometry, cyclic voltammetry, and bulk electrolysis. Electron paramagnetic resonance signals from the carbocyclic nitroxide derivatives (piperidinyl, pyrrolidinyl, and pyrrolinyl) were unchanged when exposed to enzymatically generated .O2-, whereas, in the presence of .O2- and reducing agents such as NADH and NADPH, the nitroxides underwent reduction to their respective hydroxylamines. The reaction of 4-hydroxy-2,2,6,6-tetramethyl-1-hydroxypiperidine (Tempol-H) with .O2- was measured and, in agreement with earlier reports on related compounds, the rate was found to be too slow to be consistent with a mechanism of .O2- dismutation involving the hydroxylamine as an intermediate. Voltammetric analyses of the carbocyclic nitroxide derivatives revealed a reversible one-electron redox couple at positive potentials. In contrast, oxazolidine derivatives were irreversibly oxidized. At negative potentials, all of the nitroxides studied exhibited a broad, irreversible reductive wave. The rate of .O2- dismutation correlated with the reversible midpoint redox potential. Bulk electrolysis at positive potentials was found to generate a metastable oxidized form of the nitroxide. The results indicate that the dismutation of .O2- is catalyzed by the oxoammonium/nitroxide redox couple for carbocyclic nitroxide derivatives. In addition to the one-electron mitochondrial reduction pathway, the present results suggest the possibility that cellular bioreduction by a two-electron pathway may occur subsequent to oxidation of stable nitroxides. Furthermore, the cellular destruction of persistent spin adduct nitroxides might also be facilitated by a primary univalent oxidation.
引用
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页码:5537 / 5541
页数:5
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