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The versatility of the fungal cytochrome P450 monooxygenase system is instrumental in xenobiotic detoxification

机译:真菌细胞色素P450单加氧酶系统的多功能性有助于异源生物排毒

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摘要

Cytochromes P450 (CYPs) catalyse diverse reactions and are key enzymes in fungal primary and secondary metabolism, and xenobiotic detoxification. CYP enzymatic properties and substrate specificity determine the reaction outcome. However, CYP-mediated reactions may also be influenced by their redox partners. Filamentous fungi with numerous CYPs often possess multiple microsomal redox partners, cytochrome P450 reductases (CPRs). In the plant pathogenic ascomycete Cochliobolus lunatus we recently identified two CPR paralogues, CPR1 and CPR2. Our objective was to functionally characterize two endogenous fungal cytochrome P450 systems and elucidate the putative physiological roles of CPR1 and CPR2. We reconstituted both CPRs with CYP53A15, or benzoate 4-hydroxylase from C. lunatus, which is crucial in the detoxification of phenolic plant defence compounds. Biochemical characterization using RP-HPLC shows that both redox partners support CYP activity, but with different product specificities. When reconstituted with CPR1, CYP53A15 converts benzoic acid to 4-hydroxybenzoic acid, and 3-methoxybenzoic acid to 3-hydroxybenzoic acid. However, when the redox partner is CPR2, both substrates are converted to 3,4-dihydroxybenzoic acid. Deletion mutants and gene expression in mycelia grown on media with inhibitors indicate that CPR1 is important in primary metabolism, whereas CPR2 plays a role in xenobiotic detoxification.
机译:细胞色素P450(CYPs)催化多种反应,是真菌一级和二级代谢以及异源生物解毒中的关键酶。 CYP的酶学性质和底物特异性决定了反应的结果。但是,CYP介导的反应也可能受到其氧化还原伙伴的影响。具有许多CYP的丝状真菌通常具有多个微粒体氧化还原伙伴,即细胞色素P450还原酶(CPR)。最近,在植物病原体子囊菌Cochliobolus lunatus中,我们确定了两个CPR旁系同源物:CPR1和CPR2。我们的目标是在功能上表征两个内源性真菌细胞色素P450系统,并阐明CPR1和CPR2的假定生理作用。我们用CYP53A15或C. lunatus的苯甲酸酯4-羟化酶重构了这两种CPR,这在酚类植物防御化合物的解毒中至关重要。使用RP-HPLC进行生化表征显示,两个氧化还原伙伴均支持CYP活性,但具有不同的产品特异性。当用CPR1重构时,CYP53A15将苯甲酸转化为4-羟基苯甲酸,并将3-甲氧基苯甲酸转化为3-羟基苯甲酸。但是,当氧化还原伴侣为CPR2时,两种底物都转化为3,4-二羟基苯甲酸。在含有抑制剂的培养基上生长的菌丝体中的突变突变体和基因表达表明,CPR1在初级代谢中很重要,而CPR2在异源生物解毒中起作用。

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