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MPP+的氧化还原循环:一种涉及与黄嘌呤氧化酶、醛脱氢酶和硫辛酰胺脱氢酶进行氢化物转移的新机制的证据。

Redox cycling of MPP+: evidence for a new mechanism involving hydride transfer with xanthine oxidase, aldehyde dehydrogenase, and lipoamide dehydrogenase.

作者信息

Klaidman L K, Adams J D, Leung A C, Kim S S, Cadenas E

机构信息

Department of Molecular Pharmacology and Toxicology, School of Pharmacy, University of Southern California, Los Angeles 90033.

出版信息

Free Radic Biol Med. 1993 Aug;15(2):169-79. doi: 10.1016/0891-5849(93)90056-z.

Abstract

MPP+ is redox active in the presence of cytochrome P450 reductase and induces the formation of O2.- and HO(.). In this study, we report the redox cycling capability of MPP+ with additional enzymes and with UV photolysis detected through ESR techniques. The treatment of MPP+ with UV light resulted in the production of HO. trapped as a spin adduct. Two of the enzymes examined in this study, xanthine oxidase and aldehyde dehydrogenase, produced O2.- in the presence of substrate. However, when MPP+ was added to the incubations, the radical trapped by DMPO was HO(.). This indicates that MPP+ redox cycles in the presence of these two enzymes or UV light, which produces HO.. Our data also suggest that MPP+ is reduced by lipoamide dehydrogenase. MPP+ stimulated the oxidation of reduced nicotinamide adenine dinucleotide (NADH) by the enzyme at concentrations between 2 mM and 8 mM of MPP+. Higher concentrations of MPP+ inhibited lipoamide dehydrogenase. MPP+ appears to be redox active with a number of redox enzymes. The mechanism involved may be hydride transfer from the enzymes to MPP+, rather than a direct single-electron reduction.

摘要

在细胞色素P450还原酶存在的情况下,MPP+具有氧化还原活性,并诱导超氧阴离子(O2.-)和羟基自由基(HO(.))的形成。在本研究中,我们报告了通过电子顺磁共振(ESR)技术检测到的MPP+与其他酶以及紫外线光解的氧化还原循环能力。用紫外线处理MPP+会产生以自旋加合物形式捕获的羟基自由基(HO.)。本研究中检测的两种酶,即黄嘌呤氧化酶和醛脱氢酶,在有底物存在时会产生超氧阴离子(O2.-)。然而,当将MPP+添加到孵育体系中时,被二甲基吡啶鎓氧化物(DMPO)捕获的自由基是羟基自由基(HO(.))。这表明MPP+在这两种酶或紫外线存在的情况下进行氧化还原循环,而紫外线会产生羟基自由基(HO.)。我们的数据还表明,MPP+可被硫辛酰胺脱氢酶还原。在MPP+浓度为2 mM至8 mM时,MPP+会刺激该酶对还原型烟酰胺腺嘌呤二核苷酸(NADH)的氧化。更高浓度的MPP+会抑制硫辛酰胺脱氢酶。MPP+似乎与多种氧化还原酶具有氧化还原活性。其中涉及的机制可能是氢化物从酶转移至MPP+,而不是直接的单电子还原。

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