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Benzene oxygenation and oxidation by the peroxygenase of Agrocybe aegerita

机译:茶树菇过氧合酶对苯的氧化和氧化作用

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摘要

Aromatic peroxygenase (APO) is an extracellular enzyme produced by the agaric basidiomycete Agrocybe aegerita that catalyzes diverse peroxide-dependent oxyfunctionalization reactions. Here we describe the oxygenation of the unactivated aromatic ring of benzene with hydrogen peroxide as co-substrate. The optimum pH of the reaction was around 7 and it proceeded via an initial epoxide intermediate that re-aromatized in aqueous solution to form phenol. Identity of the epoxide intermediate as benzene oxide was proved by a freshly prepared authentic standard using GC-MS and LC-MS analyses. Second and third [per]oxygenation was also observed and resulted in the formation of further hydroxylation and following [per]oxidation products: hydroquinone and p-benzoquinone, catechol and o-benzoquinone as well as 1,2,4-trihydroxybenzene and hydroxy-p-benzoquinone, respectively. Using H218O2 as co-substrate and ascorbic acid as radical scavenger, inhibiting the formation of peroxidation products (e.g., p-benzoquinone), the origin of the oxygen atom incorporated into benzene or phenol was proved to be the peroxide. Apparent enzyme kinetic constants (kcat, Km) for the peroxygenation of benzene were estimated to be around 8 s-1 and 3.6 mM. These results raise the possibility that peroxygenases may be useful for enzymatic syntheses of hydroxylated benzene derivatives under mild conditions.
机译:芳香族过氧合酶(APO)是由木耳担子菌Agrocybe aegerita产生的一种细胞外酶,可催化多种过氧化物依赖性的氧官能化反应。在这里,我们描述了以过氧化氢为共底物对苯的未活化芳环的氧合。该反应的最佳pH约为7,并通过初始的环氧中间体进行,该中间体在水溶液中重新芳构化以形成苯酚。使用GC-MS和LC-MS分析法通过新鲜制备的真实标准品证明了环氧化物中间体为氧化苯。还观察到第二和第三次[全]氧化,并导致进一步的羟基化反应和随后的[全]氧化产物:氢醌和对苯醌,儿茶酚和邻苯醌以及1,2,4-三羟基苯和羟基-对苯醌分别。以H2 18 O2作为共底物,抗坏血酸作为自由基清除剂,抑制过氧化产物(例如对苯醌)的形成,证明结合到苯或苯酚中的氧原子的来源是过氧化物。苯过氧化的表观酶动力学常数(kcat,Km)估计为8 s -1 和3.6 mM。这些结果增加了过加氧酶在温和条件下可用于羟化苯衍生物的酶促合成的可能性。

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