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Induction Isolation and Characterization of Two Laccases from the White Rot Basidiomycete Coriolopsis rigida

机译:白腐烂担子菌科僵菌的两个漆酶的诱导分离和鉴定

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摘要

Previous work has shown that the white rot fungus Coriolopsis rigida degraded wheat straw lignin and both the aliphatic and aromatic fractions of crude oil from contaminated soils. To better understand these processes, we studied the enzymatic composition of the ligninolytic system of this fungus. Since laccase was the sole ligninolytic enzyme found, we paid attention to the oxidative capabilities of this enzyme that would allow its participation in the mentioned degradative processes. We purified two laccase isoenzymes to electrophoretic homogeneity from copper-induced cultures. Both enzymes are monomeric proteins, with the same molecular mass (66 kDa), isoelectric point (3.9), N-linked carbohydrate content (9%), pH optima of 3.0 on 2,6-dimethoxyphenol (DMP) and 2.5 on 2,2′-azinobis(3-ethylbenzothiazoline-6-sulfonic acid) (ABTS), absorption spectrum, and N-terminal amino acid sequence. They oxidized 4-anisidine and numerous phenolic compounds, including methoxyphenols, hydroquinones, and lignin-derived aldehydes and acids. Phenol red, an unusual substrate of laccase due to its high redox potential, was also oxidized. The highest enzyme affinity and efficiency were obtained with ABTS and, among phenolic compounds, with 2,6-dimethoxyhydroquinone (DBQH2). The presence of ABTS in the laccase reaction expanded the substrate range of C. rigida laccases to nonphenolic compounds and that of MBQH2 extended the reactions catalyzed by these enzymes to the production of H2O2, the oxidation of Mn2+, the reduction of Fe3+, and the generation of hydroxyl radicals. These results confirm the participation of laccase in the production of oxygen free radicals, suggesting novel uses of this enzyme in degradative processes.
机译:先前的工作表明,白腐真菌硬壳菌降解了麦秸中的木质素,以及被污染土壤中原油的脂肪族和芳香族部分。为了更好地理解这些过程,我们研究了这种真菌的木质素分解系统的酶促组成。由于漆酶是唯一的木质素分解酶,因此我们关注该酶的氧化能力,以使其参与上述降解过程。我们从铜诱导的培养物中纯化了两种漆酶同工酶以实现电泳均质。两种酶都是单体蛋白,具有相同的分子量(66 kDa),等电点(3.9),N-连接的碳水化合物含量(9%),2,6-二甲氧基苯酚(DMP)的pH最适值为3.0、2时为2.5。 2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸)(ABTS),吸收光谱和N端氨基酸序列。他们氧化了4-茴香胺和许多酚类化合物,包括甲氧基酚,对苯二酚以及木质素衍生的醛和酸。酚红,由于其高的氧化还原电势,是漆酶的不寻常底物,也被氧化。使用ABTS以及在酚类化合物中使用2,6-二甲氧基氢醌(DBQH2),可获得最高的酶亲和力和效率。漆酶反应中ABTS的存在将硬壳梭菌漆酶的底物范围扩大到非酚类化合物,MBQH2的底物范围将这些酶催化的反应扩展到H2O2的产生,Mn 2 + 的氧化。 ,Fe 3 + 的还原以及羟基自由基的产生。这些结果证实漆酶参与氧自由基的产生,表明该酶在降解过程中的新用途。

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