Université de Toulouse 3, UPS, UMR 152 PHARMA-DEV, 118 route de Narbonne, F-31062 Toulouse cedex 9, France.
Free Radic Res. 2011 Oct;45(10):1184-95. doi: 10.3109/10715762.2011.605788. Epub 2011 Aug 9.
quinone oxidoreductase 2 (QR2) is a cytosolic enzyme that catalyzes the reduction of quinones, such as menadione and co-enzymes Q. With the aim of understanding better the mechanisms of action of QR2, we approached this enzyme catalysis via electron paramagnetic resonance (EPR) measurements of the by-products of the QR2 redox cycle. The variation in the production of oxidative species such as H(2)O(2), and subsequent hydroxyl radical generation, was measured during the course of QR2 activity under aerobic conditions and using pure human enzyme. The effects on the activity of the following were compared: (i) synthetic (N-benzyldihydronicotinamide, BNAH) or natural (nicotinamide riboside, NRH) co-substrates; (ii) synthetic (menadione) or natural (co-enzyme Q0, Q2) substrates; (iii) QR2 modulators and inhibitors (melatonin, resveratrol and S29434); (iv) a pro-drug activated via a redox cycle [CB1954, 5-(aziridin-1-yl)-2,4-dinitrobenzamide]. The results were also compared with those obtained with human QR1. The production of hydroxyl radicals is: (i) observed whatever the substrate/co-substrate used; ii) quenched by adding catalase; (iii) not observed with the specific QR2 inhibitor S29434; (iv) observed with the pro-drug CB1954. While QR2 produced free radicals with this pro-drug, QR1 gave no EPR signal showing the strong reducing capacity of QR2. In conclusion, EPR analysis of QR2 enzyme activity through free radical production enables modulators and effective inhibitors to be distinguished.
醌氧化还原酶 2(QR2)是一种细胞溶质酶,可催化醌类物质(如亚甲二氢醌和辅酶 Q)的还原。为了更好地理解 QR2 的作用机制,我们通过 QR2 氧化还原循环的副产物的电子顺磁共振(EPR)测量来研究该酶的催化作用。在有氧条件下使用纯人酶,测量了 QR2 活性过程中氧化物质(如 H(2)O(2))的产生和随后的羟基自由基生成的变化。比较了以下因素对活性的影响:(i)合成(N-苄基二氢烟酰胺,BNAH)或天然(烟酰胺核糖,NRH)辅酶底物;(ii)合成(亚甲二氢醌)或天然(辅酶 Q0、Q2)底物;(iii)QR2 调节剂和抑制剂(褪黑素、白藜芦醇和 S29434);(iv)通过氧化还原循环激活的前药[CB1954,5-(氮丙啶-1-基)-2,4-二硝基苯甲酰胺]。还将结果与从人 QR1 获得的结果进行了比较。产生羟基自由基是:(i)无论使用何种底物/辅酶,均会观察到;(ii)添加过氧化氢酶会使其猝灭;(iii)特定的 QR2 抑制剂 S29434 不会观察到;(iv)与前药 CB1954 一起观察到。当 QR2 用这种前药产生自由基时,QR1 没有给出 EPR 信号,这表明 QR2 具有很强的还原能力。总之,通过自由基生成分析 QR2 酶活性的 EPR 分析可区分调节剂和有效抑制剂。