Nitro-oleic Acid, a Novel and Irreversible Inhibitor of Xanthine Oxidoreductase

Xanthine oxidoreductase (XOR) generates proinflammatory oxidants and secondary nitrating species, with inhibition of XOR proving beneficial in a variety of disorders. Electrophilic nitrated fatty acid derivatives, such as nitro-oleic acid (OA-NO2), display anti-inflammatory effects with pleiotropic...

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Veröffentlicht in:The Journal of biological chemistry 2008-12, Vol.283 (52), p.36176-36184
Hauptverfasser: Kelley, Eric E., Batthyany, Carlos I., Hundley, Nicholas J., Woodcock, Steven R., Bonacci, Gustavo, Del Rio, J. Mauricio, Schopfer, Francisco J., Lancaster, Jack R., Freeman, Bruce A., Tarpey, Margaret M.
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Sprache:eng
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Zusammenfassung:Xanthine oxidoreductase (XOR) generates proinflammatory oxidants and secondary nitrating species, with inhibition of XOR proving beneficial in a variety of disorders. Electrophilic nitrated fatty acid derivatives, such as nitro-oleic acid (OA-NO2), display anti-inflammatory effects with pleiotropic properties. Nitro-oleic acid inhibits XOR activity in a concentration-dependent manner with an IC50 of 0.6 μm, limiting both purine oxidation and formation of superoxide O2·¯. Enzyme inhibition by OA-NO2 is not reversed by thiol reagents, including glutathione, β-mercaptoethanol, and dithiothreitol. Structure-function studies indicate that the carboxylic acid moiety, nitration at the 9 or 10 olefinic carbon, and unsaturation is required for XOR inhibition. Enzyme turnover and competitive reactivation studies reveal inhibition of electron transfer reactions at the molybdenum cofactor accounts for OA-NO2-induced inhibition. Importantly, OA-NO2 more potently inhibits cell-associated XOR-dependent O2·¯ production than does allopurinol. Combined, these data establish a novel role for OA-NO2 in the inhibition of XOR-derived oxidant formation.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M802402200