首页> 外文期刊>Journal of applied microbiology >Characteristics of major Escherichia coli reductases involved in aerobic nitro and azo reduction.
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Characteristics of major Escherichia coli reductases involved in aerobic nitro and azo reduction.

机译:涉及好氧硝基和偶氮还原的主要大肠杆菌还原酶的特征。

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Aims: Escherichia coli is able to reduce azo compounds such as methyl red (MR) and nitro compounds such as 7-nitrocoumarin-3-carboxylic acid (7NCCA). The aim of this study was to clarify the specificity of the major E. coli reductases. Methods and Results: Enzymatic assays with pure enzymes obtained after cloning, overproduction and purification under native or denaturing conditions were performed on three enzymes: AzoR, NfsA and NfsB. Their dependence on putative cofactors such as flavin mononucleotide (FMN), NADH and NADPH was studied as well as the reductase capacity of E. coli mutants depleted for one, two or three of the corresponding genes. Conclusions: AzoR was able to reduce both MR and 7NCCA, whereas NfsA and NfsB could only reduce the nitro compound. AzoR and NfsB were strictly FMN dependent in contrast to NfsA. At a low oxygen concentration, the three proteins were not mandatory for azo reduction and nitro reduction, but in optimal aerobic conditions, azoR was essential for MR reduction, and an nfsAfsB combination was important for 7NCCA reduction. Overexpression of azoR gene was able to compensate for the loss of nfsA and nfsB under aerobic conditions. Significance and Impact of Study: These data provide new insights into the substrate specificity of major E. coli nitroreductases and demonstrate that oxygen is an important parameter to take into account in studies of nitroreductase activity.
机译:目的:大肠杆菌能够还原诸如甲基红(MR)之类的偶氮化合物和诸如7-硝基香豆素-3-羧酸(7NCCA)之类的硝基化合物。这项研究的目的是阐明主要的大肠杆菌还原酶的特异性。方法和结果:在天然或变性条件下,克隆,过量生产和纯化后,对三种酶进行了纯酶的酶促测定:AzoR,NfsA和NfsB。研究了它们对诸如黄素单核苷酸(FMN),NADH和NADPH等假定的辅助因子的依赖性,以及缺失了一个,两个或三个相应基因的大肠杆菌突变体的还原酶能力。结论:AzoR能够还原MR和7NCCA,而NfsA和NfsB只能还原硝基化合物。与NfsA相比,AzoR和NfsB严格依赖FMN。在低氧浓度下,这三种蛋白质对于偶氮还原和硝基还原不是强制性的,但在最佳有氧条件下,azoR对于MR还原至关重要,而nfsA / nfsB的组合对于7NCCA还原很重要。 azoR基因的过表达能够补偿有氧条件下nfsA和nfsB的损失。研究的意义和影响:这些数据提供了对主要大肠杆菌硝基还原酶底物特异性的新见解,并证明了氧气是研究硝基还原酶活性时要考虑的重要参数。

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