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含人工黄素的链球菌NADH氧化酶的催化特性

Catalytic properties of streptococcal NADH oxidase containing artificial flavins.

作者信息

Ahmed S A, Claiborne A

机构信息

Department of Biochemistry, Wake Forest University Medical Center, Winston-Salem, North Carolina 27157-1016.

出版信息

J Biol Chem. 1992 Dec 25;267(36):25822-9.

PMID:1464596
Abstract

The flavoprotein NADH oxidase from Streptococcus faecalis 10C1, which catalyzes the tetravalent reduction of O2-->2H2O, has been purified as the apoenzyme to allow reconstitution studies with both native and artificial flavins. Turnover numbers for the enzyme containing 1-deaza-, 2-thio-, and 4-thio-FAD range from 51 to 4% of that of the native FAD enzyme; these reconstituted oxidases also catalyze the four-electron reduction of oxygen. Dithionite and NADH titrations of the native FAD oxidase require 1.7 eq of reductant/FAD and follow spectral courses very similar to those previously reported for the purified holoenzyme. Azide is a linear mixed-type inhibitor with respect to NADH, and dithionite titrations in the presence of azide yield significant stabilization of the neutral blue semiquinone. Redox stoichiometries for the oxidase containing modified flavins range from 1.1 to 1.4 eq of reductant/FAD. Spectrally distinct reduced enzyme.NAD+ complexes result with all but the 2-thio-FAD enzyme on titration with NADH. The reduced 4-thio-FAD oxidase shows little or no evidence of desulfurization to native FAD on reduction and reoxidation. Both the 8-mercapto- (E'o = -290 mV) and 8-hydroxy-FAD (E'o = -335 mV) oxidase are readily reduced by excess NADH. These results offer a further basis for analysis of the active-site structure and oxygen reactivity of this unique flavoprotein oxidase.

摘要

来自粪肠球菌10C1的黄素蛋白NADH氧化酶可催化O2向2H2O的四价还原,该酶已被纯化成为脱辅基酶,以便进行天然黄素和人工黄素的重组研究。含1-脱氮杂黄素、2-硫代黄素和4-硫代黄素腺嘌呤二核苷酸(FAD)的该酶的转换数为天然FAD酶的51%至4%;这些重组氧化酶也能催化氧的四电子还原。天然FAD氧化酶的连二亚硫酸盐和NADH滴定需要1.7当量的还原剂/FAD,其光谱变化过程与先前报道的纯化全酶非常相似。叠氮化物是一种关于NADH的线性混合型抑制剂,在叠氮化物存在下进行连二亚硫酸盐滴定可使中性蓝色半醌得到显著稳定。含修饰黄素的氧化酶的氧化还原化学计量比为1.1至1.4当量的还原剂/FAD。用NADH滴定后,除2-硫代黄素腺嘌呤二核苷酸酶外,所有氧化酶都产生了光谱上不同的还原酶-NAD+复合物。还原态的4-硫代黄素腺嘌呤二核苷酸氧化酶在还原和再氧化过程中几乎没有显示出脱硫生成天然FAD的迹象。8-巯基-(E'o = -290 mV)和8-羟基-FAD(E'o = -335 mV)氧化酶都很容易被过量的NADH还原。这些结果为分析这种独特的黄素蛋白氧化酶的活性位点结构和氧反应性提供了进一步的依据。

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