Poole L B, Claiborne A
J Biol Chem. 1986 Nov 5;261(31):14525-33.
The flavin-containing NADH peroxidase of Streptococcus faecalis 10C1, which catalyzes the reaction: NADH + H+ + H2O2----NAD+ + 2H2O, has been purified to homogeneity in our laboratory for analyses of both its structure and redox behavior. Our findings indicate that the enzyme is a tetramer of four apparently identical subunits (Mr = 46,000/subunit), each containing one FAD coenzyme and a second non-flavin, nonmetal redox center. There is no evidence of nonequivalence among the flavins. Dithionite reduction of the enzyme occurs in two steps, with end points of 0.96 and 2.05 eq/FAD. The first step generates a two-electron reduced form of the enzyme (EH2) which is spectrally identical with that generated by aerobic addition of NADH. Our studies suggest that the long-wavelength absorbance band (lambda max approximately 540 nm) exhibited by this form results from charge-transfer interaction between the reduced non-flavin redox center and the oxidized flavin. A second type of long-wavelength charge-transfer absorbance band (lambda max approximately 770 nm) is generated on anaerobic addition of 1 eq of NADH to EH2 and results from interaction between oxidized FAD and the reduced pyridine nucleotide. Either the EH2 X NAD+ or the EH2 X NAD+ X NADH forms may be involved in the catalytic mechanism of the enzyme, as both are reactive with hydrogen peroxide.
粪肠球菌10C1含黄素的NADH过氧化物酶可催化反应:NADH + H⁺ + H₂O₂ → NAD⁺ + 2H₂O,我们实验室已将其纯化至同质,以分析其结构和氧化还原行为。我们的研究结果表明,该酶是由四个明显相同的亚基组成的四聚体(每个亚基Mr = 46,000),每个亚基含有一个FAD辅酶和第二个非黄素、非金属氧化还原中心。没有证据表明黄素之间存在不等价性。该酶用连二亚硫酸盐还原分两步进行,终点为0.96和2.05 eq/FAD。第一步产生酶的双电子还原形式(EH₂),其光谱与有氧添加NADH产生的形式相同。我们的研究表明,这种形式呈现的长波长吸收带(λmax约为540 nm)是由还原的非黄素氧化还原中心与氧化的黄素之间的电荷转移相互作用引起的。在厌氧条件下向EH₂添加1 eq NADH会产生第二种类型的长波长电荷转移吸收带(λmax约为770 nm),它是由氧化的FAD与还原的吡啶核苷酸之间的相互作用产生的。EH₂×NAD⁺或EH₂×NAD⁺×NADH形式可能都参与了该酶的催化机制,因为它们都能与过氧化氢反应。