首页> 美国卫生研究院文献>Journal of Bacteriology >2-Nitrobenzoate 2-Nitroreductase (NbaA) Switches Its Substrate Specificity from 2-Nitrobenzoic Acid to 24-Dinitrobenzoic Acid under Oxidizing Conditions
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2-Nitrobenzoate 2-Nitroreductase (NbaA) Switches Its Substrate Specificity from 2-Nitrobenzoic Acid to 24-Dinitrobenzoic Acid under Oxidizing Conditions

机译:2-硝基苯甲酸酯2-硝基还原酶(NbaA)在氧化条件下将其底物特异性从2-硝基苯甲酸变为24-二硝基苯甲酸

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摘要

2-Nitrobenzoate 2-nitroreductase (NbaA) of Pseudomonas fluorescens strain KU-7 is a unique enzyme, transforming 2-nitrobenzoic acid (2-NBA) and 2,4-dinitrobenzoic acid (2,4-DNBA) to the 2-hydroxylamine compounds. Sequence comparison reveals that NbaA contains a conserved cysteine residue at position 141 and two variable regions at amino acids 65 to 74 and 193 to 216. The truncated mutant Δ65-74 exhibited markedly reduced activity toward 2,4-DNBA, but its 2-NBA reduction activity was unaffected; however, both activities were abolished in the Δ193-216 mutant, suggesting that these regions are necessary for the catalysis and specificity of NbaA. NbaA showed different lag times for the reduction of 2-NBA and 2,4-DNBA with NADPH, and the reduction of 2,4-DNBA, but not 2-NBA, failed in the presence of 1 mM dithiothreitol or under anaerobic conditions, indicating oxidative modification of the enzyme for 2,4-DNBA. The enzyme was irreversibly inhibited by 5,5′-dithio-bis-(2-nitrobenzoic acid) and ZnCl2, which bind to reactive thiol/thiolate groups, and was eventually inactivated during the formation of higher-order oligomers at high pH, high temperature, or in the presence of H2O2. SDS-PAGE and mass spectrometry revealed the formation of intermolecular disulfide bonds by involvement of the two cysteines at positions 141 and 194. Site-directed mutagenesis indicated that the cysteines at positions 39, 103, 141, and 194 played a role in changing the enzyme activity and specificity toward 2-NBA and 2,4-DNBA. This study suggests that oxidative modifications of NbaA are responsible for the differential specificity for the two substrates and further enzyme inactivation through the formation of disulfide bonds under oxidizing conditions.
机译:荧光假单胞菌菌株KU-7的2-硝基苯甲酸酯2-硝基还原酶(NbaA)是一种独特的酶,可将2-硝基苯甲酸(2-NBA)和2,4-二硝基苯甲酸(2,4-DNBA)转化为2-羟胺化合物。序列比较显示,NbaA在141位含有一个保守的半胱氨酸残基,在氨基酸65至74和193至216位具有两个可变区。截短的突变体Δ65-74对2,4-DNBA的活性明显降低,但其2-NBA还原活动不受影响;但是,这两种活性在Δ193-216突变体中均被废除,表明这些区域对于NbaA的催化和特异性是必需的。 NbaA对于使用NADPH降低2-NBA和2,4-DNBA的反应显示了不同的滞后时间,并且在存在1 mM二硫苏糖醇或在厌氧条件下降低2,4-DNBA而不是2-NBA失败,表明该酶对2,4-DNBA的氧化修饰。该酶被5,5'-二硫代双-(2-硝基苯甲酸)和ZnCl2不可逆地抑制,它们与反应性硫醇/硫醇盐基团结合,并最终在高pH,高pH下形成高阶低聚物时失活。温度或在H2O2存在下。 SDS-PAGE和质谱分析显示,在位置141和194的两个半胱氨酸参与形成了分子间二硫键。定点诱变表明,位置39、103、141和194的半胱氨酸在改变酶中起作用对2-NBA和2,4-DNBA的活动和特异性。这项研究表明,NbaA的氧化修饰导致两种底物的特异性不同,并通过在氧化条件下形成二硫键进一步使酶失活。

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