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Linking Enzymatic Oxidative Degradation of Lignin to Organics Detoxification

机译:将木质素的酶氧化降解与有机物解毒联系起来

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摘要

The major enzymes involved in lignin degradation are laccase, class II peroxidases (lignin peroxidase, manganese peroxidase, and versatile peroxidase) and dye peroxidase, which use an oxidative or peroxidative mechanism to deconstruct the complex and recalcitrant lignin. Laccase and manganese peroxidase directly oxidize phenolic lignin components, while lignin peroxidase and versatile peroxidase can act on the more recalcitrant non-phenolic lignin compounds. Mediators or co-oxidants not only increase the catalytic ability of these enzymes, but also largely expand their substrate scope to those with higher redox potential or more complicated structures. Neither laccase nor the peroxidases are stringently selective of substrates. The promiscuous nature in substrate preference can be employed in detoxification of a range of organics.
机译:木质素降解涉及的主要酶是漆酶,II类过氧化物酶(木质素过氧化物酶,锰过氧化物酶和通用过氧化物酶)和染料过氧化物酶,它们使用氧化或过氧化机制来解构复杂且难降解的木质素。漆酶和锰过氧化物酶直接氧化酚类木质素成分,而木质素过氧化物酶和通用过氧化物酶可以作用于难降解的非酚类木质素化合物。介导剂或助氧化剂不仅提高了这些酶的催化能力,而且还大大扩展了其底物范围,使其具有更高的氧化还原电势或更复杂的结构。漆酶和过氧化物酶都不是对底物的严格选择。底物优选的混杂性质可用于多种有机物的解毒。

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