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首页> 外文期刊>FEBS Letters >Lignin dehydrogenative polymerization mechanism: a poplar cell wall peroxidase directly oxidizes polymer lignin and produces in vitro dehydrogenative polymer rich in β‐O‐4 linkage
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Lignin dehydrogenative polymerization mechanism: a poplar cell wall peroxidase directly oxidizes polymer lignin and produces in vitro dehydrogenative polymer rich in β‐O‐4 linkage

机译:木质素脱氢聚合机理:杨树细胞壁过氧化物酶直接氧化聚合物木质素并产生富含β-O-4键合的体外脱氢聚合物

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>An investigation was performed to determine whether lignin dehydrogenative polymerization proceeds via radical mediation or direct oxidation by peroxidases. It was found that coniferyl alcohol radical transferred quickly to sinapyl alcohol. The transfer to syringaresinol was slower, however, the transfer to polymeric lignols occurred very slightly. This result suggests that the radical mediator theory does not sufficiently explain the mechanism for dehydrogenative polymerization of lignin. A cationic cell wall peroxidase (CWPO-C) from poplar (Populus alba L.) callus showed a strong substrate preference for sinapyl alcohol and the sinapyl alcohol dimer, syringaresinol. Moreover, CWPO-C was capable of oxidizing high-molecular-weight sinapyl alcohol polymers and ferrocytochrome c. Therefore, the CWPO-C characteristics are important to produce polymer lignin. The results suggest that CWPO-C may be a peroxidase isoenzyme responsible for the lignification of plant cell walls.
机译:进行研究以确定木质素脱氢聚合是通过自由基介导还是通过过氧化物酶直接氧化而进行。发现松柏醇自由基迅速转移到芥子醇。向丁香脂醇的转移较慢,但是向聚合木质素的转移非常轻微。该结果表明自由基介体理论不足以解释木质素脱氢聚合的机理。杨树愈伤组织中的阳离子细胞壁过氧化物酶(CWPO-C)对芥子醇和芥子醇二聚体丁香脂醇具有强烈的底物偏爱性。此外,CWPO-C能够氧化高分子量的芥子醇聚合物和铁细胞色素 c 。因此,CWPO-C特性对于生产聚合物木质素很重要。结果表明,CWPO-C可能是负责植物细胞壁木质化的过氧化物酶同工酶。

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