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NAD(P)H:Flavin Mononucleotide Oxidoreductase Inactivation during 246-Trinitrotoluene Reduction

机译:NAD(P)H:黄素单核苷酸氧化还原酶在246-三硝基甲苯还原过程中失活

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摘要

Bacteria readily transform 2,4,6-trinitrotoluene (TNT), a contaminant frequently found at military bases and munitions production facilities, by reduction of the nitro group substituents. In this work, the kinetics of nitroreduction were investigated by using a model nitroreductase, NAD(P)H:flavin mononucleotide (FMN) oxidoreductase. Under mediation by NAD(P)H:FMN oxidoreductase, TNT rapidly reacted with NADH to form 2-hydroxylamino-4,6-dinitrotoluene and 4-hydroxylamino-2,6-dinitrotoluene, whereas 2-amino-4,6-dinitrotoluene and 4-amino-2,6-dinitrotoluene were not produced. Progressive loss of activity was observed during TNT reduction, indicating inactivation of the enzyme during transformation. It is likely that a nitrosodinitrotoluene intermediate reacted with the NAD(P)H:FMN oxidoreductase, leading to enzyme inactivation. A half-maximum constant with respect to NADH, KN, of 394 μM was measured, indicating possible NADH limitation under typical cellular conditions. A mathematical model that describes the inactivation process and NADH limitation provided a good fit to TNT reduction profiles. This work represents the first step in developing a comprehensive enzyme level understanding of nitroarene biotransformation.
机译:细菌可以通过还原硝基取代基来轻松转化2,4,6-三硝基甲苯(TNT),这是一种经常在军事基地和军需品生产设施中发现的污染物。在这项工作中,使用模型氮还原酶NAD(P)H:黄素单核苷酸(FMN)氧化还原酶研究了硝基还原的动力学。在NAD(P)H:FMN氧化还原酶的介导下,TNT与NADH迅速反应形成2-羟基氨基-4,6-二硝基甲苯和4-羟基氨基-2,6-二硝基甲苯,而2-氨基-4,6-二硝基甲苯和没有产生4-氨基-2,6-二硝基甲苯。在TNT还原过程中观察到活性的逐渐丧失,表明在转化过程中酶失活。亚硝基二硝基甲苯中间体可能与NAD(P)H:FMN氧化还原酶反应,导致酶失活。相对于NADH KN测得的半数最大常数为394μM,表明在典型细胞条件下可能存在NADH限制。描述失活过程和NADH限制的数学模型非常适合TNT还原曲线。这项工作是发展对硝基芳烃生物转化的全面酶水平理解的第一步。

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