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Free Radic Res ; 47(12): 1016-26, 2013 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-24074361

RESUMEN

NAD(P)H: quinone oxidoreductase (NQO1) and NRH:quinone oxidoreductase 2 (NQO2) catalyze the two-electron reduction of quinones and thereby prevent generation of toxic radicals. Quinone methides (QMs) covalently react with cellular macromolecules to form DNA adducts and/or protein conjugates resulting in toxicity and carcinogenesis. Based on similar structural features of quinones and QMs, it is logical to assume that NQO1 and/or NQO2 could also catalyze the two-electron reduction of QMs. However, hitherto the reduction of QMs, as both endogenous and/or exogenous biological substrates, by either NQO1/NQO2 has never been demonstrated. Here we show for the first time that both NQO1 and NQO2 can catalyze the reduction of electrophilic ortho-/para-QMs. The involvement of the enzyme in the reduction of p-cresol quinone methide (PCQM) and o-cresol quinone methide (OCQM) was demonstrated by reappearance of NQO1/NQO2-FAD peak at 450 nm after addition of the QMs to the assay mixture. Further reduction of methides by NQO1/NQO2 was confirmed by analyzing the assay mixture by tandem mass spectrometry. Preliminary kinetic studies show that NQO2 is faster in reducing QMs than its homolog NQO1, and moreover, ortho-QMs are reduced faster than para-QMs. Enzyme-substrate docking studies showed results consistent with enzyme catalysis. Thus, NQO1/NQO2 can play a significant role in deactivation of QMs.


Asunto(s)
Indolquinonas/metabolismo , NAD(P)H Deshidrogenasa (Quinona)/metabolismo , Quinona Reductasas/metabolismo , Humanos , Indolquinonas/química , Espectrometría de Masas , Simulación de Dinámica Molecular , NAD/química , NAD/metabolismo , NAD(P)H Deshidrogenasa (Quinona)/química , Quinona Reductasas/química , Espectrofotometría Ultravioleta
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