Kinetic mechanism of vanillyl-alcohol oxidase with short-chain 4-alkylphenols

被引:35
作者
Fraaije, MW [1 ]
Van den Heuvel, RHH [1 ]
Roelofs, JCAA [1 ]
Van Berkel, WJH [1 ]
机构
[1] Agr Univ Wageningen, Dept Biochem, NL-6703 HA Wageningen, Netherlands
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1998年 / 253卷 / 03期
关键词
alkylphenol; flavoprotein; p-quinone methide; kinetic isotope effect; vanillyl-alcohol oxidase;
D O I
10.1046/j.1432-1327.1998.2530712.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The kinetic mechanism of vanillyl-alcohoI oxidase with 4-methylphenol, 4-ethylphenol, di-propylphenol and their C alpha-deuterated analogs has been studied at pH 7.5 and 25 degrees C. Conversion of 4-methylphenol is extremely slow (0.005 s(-1)) while the enzyme is largely in the reduced form during turnover. 4-Ethylphenol and 4-propylphenol are readily converted while the enzyme is mainly in the oxidized form during turnover. The deuterium kinetic isotope effect for overall catalysis ranges between 7-10 whereas the intrinsic deuterium kinetic isotope effect for flavin reduction ranges over 9-10. With all three 4-alkylphenols, flavin reduction appeared to be a reversible process with the rate of reduction being in the same range as the rate for the reverse reaction. During the reductive half-reaction of vanillyl-alcohol oxidase with 4-ethylphenol and 4-propylphenol, a transient intermediate is formed with an absorbance maximum at 330 nm. This intermediate has been tentatively identified as the p-quinone methide of the aromatic substrate in complex with reduced enzyme. It is concluded that vanillyl-alcohol oxidase catalysis with 4-ethylphenol and 4-propylphenol favors an ordered sequential binding mechanism in which the rate of flavin reduction determines the turnover rate while the reduced enzyme-p-quinone methide binary complex rapidly reacts with dioxygen. During the reaction of vanillyl-alcohol oxidase with 4-methylphenol, a fluorescent enzyme species is stabilized. Based on its spectal characteristics and crystallographic data [Mattevi. A., Fraaije, M. W., Mozzarelli, A., Olivi, L., Coda. A. & van Berkel, W. J. H. (1997) Structure 5, 907-920], it is proposed that this species represents a covalent 5-(4'-hydroxybenzyl)-FAD adduct. With 4-ethylphenol and 4-propylphenol, similar N5 flavin adducts may be formed but their rare of formation is too slow to be of catalytic relevance.
引用
收藏
页码:712 / 719
页数:8
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