Keller R J, Coulombe R A, Sharma R P, Grover T A, Piette L H
Graduate Program in Toxicology, Utah State University, Logan 84322.
Free Radic Biol Med. 1989;6(1):15-22. doi: 10.1016/0891-5849(89)90154-8.
Vanadium compounds are known to stimulate the oxidation of NAD(P)H, but the mechanism remains unclear. This reaction was studied spectrophotometrically and by electron spin resonance spectroscopy (ESR) using vanadium in the reduced state (+4, vanadyl) and the oxidized state (+5, vanadate). In 25 mM sodium phosphate buffer at pH 7.4, vanadyl was slightly more effective in stimulating NADH oxidation than was vanadate. Addition of a superoxide generating system, xanthine/xanthine oxidase, resulted in a marked increase in NADH oxidation by vanadyl, and to a lesser extent, by vanadate. Decreasing the pH with superoxide present increased NADH oxidation for both vanadate and vanadyl. Addition of hydrogen peroxide to the reaction mixture did not change the NADH oxidation by vanadate, regardless of concentration or pH. With vanadyl however, addition of hydrogen peroxide greatly enhanced NADH oxidation which further increased with lower pH. Use of the spin trap DMPO in reaction mixtures containing vanadyl and hydrogen peroxide or a superoxide generating system resulted in the detection by ESR of hydroxyl. In each case, the hydroxyl radical signal intensity increased with vanadium concentration. Catalase was able to inhibit the formation of the DMPO--OH adduct formed by vanadate plus superoxide. These results show that the ability of vanadium to act in a Fenton-type reaction is an important process in the vanadium-stimulated oxidation of NADH.
已知钒化合物能刺激NAD(P)H的氧化,但其机制仍不清楚。使用还原态(+4,钒酰)和氧化态(+5,钒酸盐)的钒,通过分光光度法和电子自旋共振光谱(ESR)对该反应进行了研究。在pH 7.4的25 mM磷酸钠缓冲液中,钒酰在刺激NADH氧化方面比钒酸盐略有效。添加超氧化物生成系统黄嘌呤/黄嘌呤氧化酶后,钒酰使NADH氧化显著增加,钒酸盐使NADH氧化增加的程度较小。在存在超氧化物的情况下降低pH值,钒酸盐和钒酰的NADH氧化均增加。向反应混合物中添加过氧化氢,无论浓度或pH值如何,钒酸盐的NADH氧化都不会改变。然而,对于钒酰,添加过氧化氢会大大增强NADH氧化,且随着pH值降低进一步增加。在含有钒酰和过氧化氢或超氧化物生成系统的反应混合物中使用自旋捕获剂DMPO,通过ESR检测到了羟基。在每种情况下,羟基自由基信号强度都随钒浓度增加。过氧化氢酶能够抑制钒酸盐加超氧化物形成的DMPO-OH加合物的形成。这些结果表明,钒在芬顿型反应中的作用能力是钒刺激NADH氧化的一个重要过程。