The reduction potential of nitric oxide (NO) and its importance to NO biochemistry
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- 12 August 2002
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 99 (17) , 10958-10963
- https://doi.org/10.1073/pnas.162095599
Abstract
A potential of about −0.8 (±0.2) V (at 1 M versus normal hydrogen electrode) for the reduction of nitric oxide (NO) to its one-electron reduced species, nitroxyl anion (3NO−) has been determined by a combination of quantum mechanical calculations, cyclic voltammetry measurements, and chemical reduction experiments. This value is in accord with some, but not the most commonly accepted, previous electrochemical measurements involving NO. Reduction of NO to 1NO− is highly unfavorable, with a predicted reduction potential of about −1.7 (±0.2) V at 1 M versus normal hydrogen electrode. These results represent a substantial revision of the derived and widely cited values of +0.39 V and −0.35 V for the NO/3NO− and NO/1NO− couples, respectively, and provide support for previous measurements obtained by electrochemical and photoelectrochemical means. With such highly negative reduction potentials, NO is inert to reduction compared with physiological events that reduce molecular oxygen to superoxide. From these reduction potentials, the pKa of 3NO− has been reevaluated as 11.6 (±3.4). Thus, nitroxyl exists almost exclusively in its protonated form, HNO, under physiological conditions. The singlet state of nitroxyl anion, 1NO−, is physiologically inaccessible. The significance of these potentials to physiological and pathophysiological processes involving NO and O2 under reductive conditions is discussed.Keywords
This publication has 47 references indexed in Scilit:
- Mechanistic Study on the Electrocatalytic Reduction of Nitric Oxide on Transition-Metal ElectrodesJournal of Catalysis, 2001
- Unique Oxidative Mechanisms for the Reactive Nitrogen Oxide Species, Nitroxyl AnionJournal of Biological Chemistry, 2001
- Cytotoxicity and Site-specific DNA Damage Induced by Nitroxyl Anion (NO−) in the Presence of Hydrogen PeroxideJournal of Biological Chemistry, 1999
- Infrared Characterization of Nitric Oxide Bonding to Bovine Heart Cytochrome c Oxidase and MyoglobinBiochemical and Biophysical Research Communications, 1994
- Resonance Raman spectra of the nitric oxide adducts of ferrous cytochrome P450cam in the presence of various substratesJournal of the American Chemical Society, 1991
- The two redox potentials for oxygen reduction to superoxideTrends in Biochemical Sciences, 1987
- Reduction potential of the carbon dioxide/carbon dioxide radical anion: a comparison with other C1 radicalsThe Journal of Physical Chemistry, 1987
- Ionization potentials and electron affinities in aqueous solutionJournal of the American Chemical Society, 1986
- Nitric oxide complexes of cytochrome P‐450FEBS Letters, 1975
- Pulse Radiolysis of Nitric Oxide in Aqueous SolutionCanadian Journal of Chemistry, 1973