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Co-metabolic enzymes and pathways of 3-phenoxybenzoic acid degradation by Aspergillus oryzae M-4

机译:米曲霉M-4协同代谢酶和3-苯氧基苯甲酸降解途径

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摘要

As an intermediate metabolite of pyrethroids, 3-phenoxybenzoic acid (3-PBA) is more toxic than its parent compounds and has been detected in milk, soil, and human urine. 3-PBA can be metabolized through microbial degradation, but the microbial co-metabolic enzymes and pathways involved in 3-PBA degradation are unclear. This study investigated the enzymes types and possible pathways in the co-metabolic degradation of 3-PBA by Aspergillus oryzae M-4. The enzymes involved in co-metabolic degradation of 3-PBA and its intermediate metabolites were induced, and existed extracellularly and intracellularly except the catechol-degrading enzyme. Inhibitors and inducers of these oxidases were used to examine the enzymes required for co-metabolic degradation of 3-PBA and its intermediate metabolites. 3-PBA is hydroxylated to produce 3-hydroxy-5-phenoxy benzoic acid through the catalytic actions of lignin peroxidase (LiP). Phenol and gallic acid, the metabolites of 3-PBA, are produced via cleavage of an ether bond under the catalytic actions of cytochrome P450 (CYP450) and LiP. Phenol can be converted to catechol by LiP; catechol and gallic acid are cleaved to form long-chain olefin acid or olefin aldehyde by dioxygenase and LiP. In corn flour, some of these enzyme activators such as FeCl3, 4-cumaric acid, veratryl alcohol and sodium periodate appeared to improve 3-PBA degradation. The results provide a reliable pathway and characteristics for co-metabolic microbial degradation of 3-PBA in food and the environment.
机译:作为拟除虫菊酯的中间代谢产物,3-苯氧基苯甲酸(3-PBA)比其母体化合物毒性更高,并且已在牛奶,土壤和人尿中检测到。 3-PBA可以通过微生物降解来代谢,但是参与3-PBA降解的微生物共代谢酶和途径尚不清楚。这项研究调查了米曲霉M-4协同代谢3-PBA降解酶的类型和可能的途径。诱导了参与3-PBA代谢分解的酶及其中间代谢产物,除了儿茶酚降解酶外,它们存在于细胞外和细胞内。这些氧化酶的抑制剂和诱导剂用于检查3-PBA及其中间代谢物共代谢降解所需的酶。 3-PBA通过木质素过氧化物酶(LiP)的催化作用被羟基化以生成3-羟基-5-苯氧基苯甲酸。酚和没食子酸是3-PBA的代谢产物,是在细胞色素P450(CYP450)和LiP的催化作用下,通过醚键的裂解产生的。 LiP可以将苯酚转化为邻苯二酚;邻苯二酚和没食子酸被双加氧酶和LiP裂解形成长链烯烃酸或烯烃醛。在玉米粉中,其中一些酶激活剂(例如FeCl3、4-异丙甲酸,藜芦醇和高碘酸钠)似乎可以改善3-PBA的降解。结果为食品和环境中3-PBA的共代谢微生物降解提供了可靠的途径和特征。

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