Kalyanaraman V S, Kumar S A, Mahadevan S
Biochem J. 1975 Sep;149(3):577-84. doi: 10.1042/bj1490577.
The oxidase-peroxidase from Datura innoxia which catalyses the oxidation of formylphenylacetic acid ethyl ester to benzoylformic acid ethyl ester and formic acid was also found to catalyse the oxidation of NADH in the presence of Mn2+ and formylphenylacetic acid ethyl ester. NADH was not oxidized in the absence of formylphenylacetic acid ethyl ester, although formylphenylacetonitrile or phenylacetaldehyde could replace it in the reaction. The reaction appeared to be complex and for every mol of NADH oxidized 3-4 g-atoms of oxygen were utilized, with a concomitant formation of approx. 0.8 mol of H2O2, the latter being identified by the starch-iodide test and decomposition by catalase. Benzoylformic acid ethyl ester was also formed in the reaction, but in a nonlinear fashion, indicating a lag phase. In the absence of Mn2+, NADH oxidation was not only very low, but itself inhibited the formation of benzoylformic acid ethyl ester from formylphenylacetic acid ethyl ester. A reaction mechanism for the oxidation of NADH in the presence of formylphenylacetic acid ethyl ester is proposed.
从紫花曼陀罗中提取的氧化酶 - 过氧化物酶可催化甲酰基苯乙酸乙酯氧化为苯甲酰甲酸乙酯和甲酸,研究还发现,在存在Mn2 +和甲酰基苯乙酸乙酯的情况下,该酶也能催化NADH的氧化。在没有甲酰基苯乙酸乙酯的情况下,NADH不会被氧化,不过甲酰基苯乙腈或苯乙醛在反应中可以替代它。该反应似乎很复杂,每氧化1摩尔NADH会消耗3 - 4克原子的氧,并伴随生成约0.8摩尔的H2O2,后者通过淀粉 - 碘试验鉴定,并被过氧化氢酶分解。反应中也会生成苯甲酰甲酸乙酯,但呈非线性方式,表明存在滞后阶段。在没有Mn2 +的情况下,NADH氧化不仅非常低,而且本身还会抑制甲酰基苯乙酸乙酯生成苯甲酰甲酸乙酯的反应。本文提出了在甲酰基苯乙酸乙酯存在下NADH氧化的反应机制。