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首页> 外文期刊>Chemistry - A European Journal >Rationalization and In Vitro Modeling of the Chemical Mechanisms of the Enzymatic Oxidation of Phenolic Compounds in Planta: From Flavonols and Stilbenoids to Lignins
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Rationalization and In Vitro Modeling of the Chemical Mechanisms of the Enzymatic Oxidation of Phenolic Compounds in Planta: From Flavonols and Stilbenoids to Lignins

机译:植物中酚类化合物酶氧化的化学机理的合理化和体外建模:从黄酮醇和类胡萝卜素到木质素

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摘要

Enzymatic oxidation of phenolic compounds is a widespread phenomenon in plants. It is responsible for the formation of many oligomers and polymers, which are generally described as the result of a combinatorial coupling of the different radicals formed through oxidation of the phenol group and delocalization of the radical. We focused our interest on several phenolic compounds that are present in plants and known to form, under enzymatic oxidation, oligomers with different type of linkages between monomers. To explain this diversity of inter-monomer linkages and their variation according to the experimental procedure used for the enzymatic oxidation, we report an alternative mechanistic pathway involving dismutation of the radicals, leading to the formation of carbocations which, thereafter, react with nucleophilic species present in the medium. This alternative pathway allows the understanding of peculiar linkages between monomeric units in the oligomer and offers new insights for understanding the formation of phenolic biopolymers in plants.
机译:酚类化合物的酶促氧化是植物中普遍存在的现象。它负责形成许多低聚物和聚合物,通常将其描述为通过酚基团的氧化和自由基的离域形成的不同自由基的组合偶联的结果。我们的兴趣集中在植物中存在的几种酚类化合物上,这些酚类化合物在酶促氧化作用下会形成单体之间具有不同键类型的低聚物。为了解释这种单体间键合的多样性及其根据酶促氧化实验方法的变化,我们报告了另一种机制,该机制涉及自由基的歧化,导致碳阳离子的形成,此后与存在的亲核物质发生反应在中等。这种替代途径可以理解低聚物中单体单元之间的特殊连接,并为理解植物中酚类生物聚合物的形成提供新的见解。

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