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Initial steps of the peroxidase-catalyzed polymerization of coniferyl alcohol and/or sinapyl aldehyde: capillary zone electrophoresis study of pH effect
被引:59
作者:
Fournand, D
Cathala, B
Lapierre, C
[1
]
机构:
[1] INRA, INA PG, Chim Biol Lab, F-78850 Thiverval Grignon, France
[2] URCA, INRA, Equipe Paroi & Biomat Fibreux, F-51686 Reims, France
关键词:
horseradish peroxidase;
coniferyl alcohol;
sinapyl aldehyde;
dehydrogenative polymerization;
dehydrodimers;
hydrogen peroxide;
lignin;
lignification;
radical coupling reaction;
D O I:
10.1016/S0031-9422(02)00573-3
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:
Capillary zone electrophoresis has been used to monitor the first steps of the dehydrogenative polymerization of coniferyl alcohol, sinapyl aldehyde, or a mixture of both, catalyzed by the horseradish peroxidase (HRP)-H2O2 system. When coniferyl alcohol was the unique HRP substrate, three major dimers were observed (beta-5, beta-beta, and beta-O-4 interunit linkages) and their initial formation velocity as well as their relative abundance varied with pH. The beta-O-4 interunit linkage was thus slightly favored at lower pH values. In contrast, sinapyl aldehyde turned out to be a very poor substrate for HRP except in basic conditions (pH 8). The major dimer observed was the beta, beta'-di-sinapyl aldehyde, a red-brown exhibiting compound which might partly participate in the red coloration usually observed in cinnamyl alcohol dehydrogenase-deficient angiosperms. Finally, when a mixture of coniferyl alcohol and sinapyl aldehyde was used, it looked as if sinapyl aldehyde became a very good substrate for HRP. Indeed, coniferyl alcohol turned out to serve as a redox mediator (i.e. "shuttle oxidant") for the sinapyl aldehyde incorporation in the lignin-like polymer. This means that in particular conditions the specificity of oxidative. enzymes might not hinder the incorporation of poor substrates into the growing lignin polymer. (C) 2003 Elsevier Science Ltd. All rights reserved.
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页码:139 / 146
页数:8
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