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黄素酶还原五价钒和分子氧并生成羟基自由基。

Flavoenzymes reduce vanadium(V) and molecular oxygen and generate hydroxyl radical.

作者信息

Shi X L, Dalal N S

机构信息

Department of Chemistry, West Virginia University, Morgantown 26506.

出版信息

Arch Biochem Biophys. 1991 Sep;289(2):355-61. doi: 10.1016/0003-9861(91)90423-g.

Abstract

ESR spectroscopic evidence is presented for the formation of vanadium(IV) in the reduction of vanadium(V) by three typical, NADPH-dependent, flavoenzymes: glutathione reductase, lipoyl dehydrogenase, and ferredoxin-NADP+ oxidoreductase. The vanadium(V)-reduction mechanism appears to be an enzymatic one-electron reduction process. Addition of superoxide dismutase (SOD) showed that the generation of vanadium(IV) does not involve the superoxide (O2-) radical significantly. Measurements under anaerobic atmosphere showed, however, that the enzymes-vanadium-NADPH mixture can cause the reduction of molecular oxygen to generate H2O2. The H2O2 and vanadium(IV) thus formed react to generate hydroxyl (.OH) radical. The .OH formation is inhibited strongly by catalase and to a lesser degree by SOD, but it is enhanced by exogenous H2O2, suggesting the occurrence of a Fenton-like reaction. The inhibition of vanadium(IV) formation by N-ethylmaleimide indicates that the SH group on the flavoenzyme's cystine residue plays an important role in the enzyme's vanadium(V) reductase function. These results thus reveal a new property of the above-mentioned, NADPH-dependent flavoenzymes--their function as vanadium(V) reductases, as well as that as generators of .OH radical in the vanadium(V) reduction mechanism.

摘要

电子自旋共振光谱证据表明,在三种典型的依赖烟酰胺腺嘌呤二核苷酸磷酸(NADPH)的黄素酶(谷胱甘肽还原酶、硫辛酰胺脱氢酶和铁氧还蛋白-NADP⁺氧化还原酶)将钒(V)还原的过程中,形成了钒(IV)。钒(V)的还原机制似乎是一个酶促单电子还原过程。添加超氧化物歧化酶(SOD)表明,钒(IV)的生成并不显著涉及超氧阴离子(O₂⁻)自由基。然而,在厌氧气氛下进行的测量表明,酶-钒-NADPH混合物可导致分子氧还原生成过氧化氢(H₂O₂)。由此形成的H₂O₂和钒(IV)发生反应生成羟基(·OH)自由基。·OH的形成受到过氧化氢酶的强烈抑制,超氧化物歧化酶的抑制作用较小,但外源H₂O₂可增强其形成,这表明发生了类似芬顿反应。N-乙基马来酰亚胺对钒(IV)形成的抑制作用表明,黄素酶胱氨酸残基上的巯基在该酶的钒(V)还原酶功能中起重要作用。因此,这些结果揭示了上述依赖NADPH的黄素酶的一种新特性——它们作为钒(V)还原酶的功能,以及在钒(V)还原机制中作为·OH自由基生成剂的功能。

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