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Transformation of 246-Trinitrotoluene by Purified Xenobiotic Reductase B from Pseudomonas fluorescens I-C

机译:荧光假单胞菌I-C纯化的异种还原酶B转化246-三硝基甲苯

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摘要

The enzymatic transformation of 2,4,6-trinitrotoluene (TNT) by purified XenB, an NADPH-dependent flavoprotein oxidoreductase from Pseudomonas fluorescens I-C, was evaluated by using natural abundance and [U-14C]TNT preparations. XenB catalyzed the reduction of TNT either by hydride addition to the aromatic ring or by nitro group reduction, with the accumulation of various tautomers of the protonated dihydride-Meisenheimer complex of TNT, 2-hydroxylamino-4,6-dinitrotoluene, and 4-hydroxylamino-2,6-dinitrotoluene. Subsequent reactions of these metabolites were nonenzymatic and resulted in predominant formation of at least three dimers with an anionic m/z of 376 as determined by negative-mode electrospray ionization mass spectrometry and the release of ∼0.5 mol of nitrite per mol of TNT consumed. The extents of the initial enzymatic reactions were similar in the presence and in the absence of O2, but the dimerization reaction and the release of nitrite were favored under aerobic conditions or under anaerobic conditions in the presence of NADP+. Reactions of chemically and enzymatically synthesized and high-pressure liquid chromatography-purified TNT metabolites showed that both a hydroxylamino-dinitrotoluene isomer and a tautomer of the protonated dihydride-Meisenheimer complex of TNT were required precursors for the dimerization and nitrite release reactions. The m/z 376 dimers also reacted with either dansyl chloride or N-1-naphthylethylenediamine HCl, providing evidence for an aryl amine functional group. In combination, the experimental results are consistent with assigning the chemical structures of the m/z 376 species to various isomers of amino-dimethyl-tetranitrobiphenyl. A mechanism for the formation of these proposed TNT metabolites is presented, and the potential enzymatic and environmental significance of their formation is discussed.
机译:使用天然丰度和[U- 14 C] TNT,评估了纯化的XenB的酶促转化2,4,6-三硝基甲苯(TNT),XenB是荧光假单胞菌IC的NADPH依赖型黄素蛋白氧化还原酶。准备。 XenB可以通过氢化物加成芳环或通过硝基还原来催化TNT的还原,其中TNT的质子化二氢-迈森海默复合物的各种互变异构体,2-羟基氨基-4,6-二硝基甲苯和4-羟基氨基的积累-2,6-二硝基甲苯。这些代谢物的后续反应是非酶促反应,并导致形成至少三个二聚体,其阴离子m / z为376(通过负模电喷雾电离质谱法测定),每摩尔消耗的TNT释放约0.5摩尔的亚硝酸盐。在有氧和无氧条件下,最初的酶促反应程度相似,但是在有氧条件下或在厌氧条件下,在存在NADP + 的条件下,二聚反应和亚硝酸盐的释放是有利的。 。化学和酶促合成以及高压液相色谱纯化的TNT代谢产物的反应表明,TNT的羟氨基-二硝基甲苯异构体和质子化二氢-迈森海默复合体的互变异构体都是二聚化和亚硝酸盐释放反应所需的前体。 m / z 376二聚体还与丹酰氯或N-1-萘乙二胺HCl发生反应,提供了芳基胺官能团的证据。综合起来,实验结果与将m / z 376种的化学结构分配给氨基-二甲基-四硝基联苯的各种异构体是一致的。提出了这些拟议的TNT代谢产物形成的机制,并讨论了其形成的潜在酶学和环境意义。

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