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首页> 外文期刊>Enzyme and Microbial Technology >The influence of non-phenolic mediators and phenolic co-substrates on the oxidation of 4-bromophenol by lignin peroxidase
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The influence of non-phenolic mediators and phenolic co-substrates on the oxidation of 4-bromophenol by lignin peroxidase

机译:非酚类介质和酚类共基质对木质素过氧化物酶氧化4-溴酚的影响

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Lignin peroxidase (LIP) catalyzed oxidation of 4-bromophenol (4-BP) resulted in formation of dimers as evienced by GC-MS analysis .However 4-BP was considered a poor substrate, since it exhibited high K_m value of 600.9 #mu#M and during oxidation , LIP was subjected not only to H_2O_2-but also product-dependent inactivation .Oxidation was enhanced by inclusion of gelatin, which suppressed product-dependent inactivation and by inclusion of the dimethoxylated non-phenols, veratrole (VO) and 3,4-dimethoxycinnamic acid (DMCA) which mediated 4-BP oxidation .The mediation role of VO and DMCA is attributed to their oxidation potential (OP) values in the aqueous phase (6.04 eV for VO and 6.03 eV for DMCA), which implies that once oxidized to their respective cation radiclas, they preferentially oxidize substrates of lower OP (5.12 eV for 4-BP phenolate ion).Inclusion of the mediators enabled complete 4-BP oxidation at high H_2O_2 concentrations, overcoming H_2O_2-dependent inactivation .When the reactive ferulic acid (FA) was included as a co-substrate, its oxidation preceded that of 4-BP , and since LIP was inactivated in the process , no oxidation of 4-BP was noticed.In the case of horseradish peroxidase (HRP), 4-BP oxidation was enhanced by inclusion of FA, even though oxidation of the latter preceded that of 4-BP. Additional studies indicated that this resulted from interaction of FA-oxidation products with 4-BP. In the presence of caffeic acid and catechol, reduced oxidation of 4-BP was evident for both enzymes.In the presence of syringaldehyde, concomitant oxidation was evident for both enzymes , resulting in enhanced oxidation by HRP and moderate-to-slight enhancement by LIP
机译:木质素过氧化物酶(LIP)催化4-溴苯酚(4-BP)的氧化导致形成二聚体,但GC-MS分析证明,但是4-BP被认为是较差的底物,因为它的K_m值高达600.9#mu#在氧化过程中,LIP不仅会受到H_2O_2的钝化,还会受到产物依赖性的失活。通过加入明胶抑制了产物依赖性的失活以及通过加入二甲氧基化的非酚,四氢呋喃(VO)和3来增强氧化作用。 ,4-二甲氧基肉桂酸(DMCA)介导4-BP氧化.VO和DMCA的介导作用归因于它们在水相中的氧化电位(OP)值(VO为6.04 eV,DMCA为6.03 eV),这意味着一旦被氧化成各自的阳离子自由基,它们优先氧化较低OP的底物(4-BP酚盐离子为5.12 eV)。包含介体可以在高H_2O_2浓度下完成4-BP氧化,克服了H_2O_2依赖性失活。包括活性阿魏酸(FA)作为共底物,其氧化作用先于4-BP,并且由于LIP在此过程中被灭活,因此未观察到4-BP的氧化。 ),即使FA的氧化先于4-BP,FA的加入也会增强4-BP的氧化。进一步的研究表明,这是由于FA氧化产物与4-BP相互作用而引起的。在咖啡酸和邻苯二酚的存在下,这两种酶的4-BP氧化均明显降低;在丁香醛的存在下,两种酶的伴随氧化均明显,从而导致HRP的氧化增强和LIP的中度至轻度增强

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