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Structural and Mechanistic Insights into the Pseudomonas fluorescens 2-Nitrobenzoate 2-Nitroreductase NbaA

机译:荧光假单胞菌2-硝基苯甲酸酯2-硝基还原酶NbaA的结构和机理研究

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The bacterial 2-nitroreductase NbaA is the primary enzyme initiating the degradation of 2-nitrobenzoate (2-NBA), and its activity is controlled by posttranslational modifications. To date, the structure of NbaA remains to be elucidated. In this study, the crystal structure of a Cys194Ala NbaA mutant was determined to a 1.7-? resolution. The substrate analog 2-NBA methyl ester was used to decipher the substrate binding site by inhibition of the wild-type NbaA protein. Tandem mass spectrometry showed that 2-NBA methyl ester produced a 2-NBA ester bond at the Tyr193 residue in the wild-type NbaA but not residues in the Tyr193Phe mutant. Moreover, covalent binding of the 2-NBA methyl ester to Tyr193 reduced the reactivity of the Cys194 residue on the peptide link. The Tyr193 hydroxyl group was shown to be essential for enzyme catalysis, as a Tyr193Phe mutant resulted in fast dissociation of flavin mononucleotide (FMN) from the protein with the reduced reactivity of Cys194. FMN binding to NbaA varied with solution NaCl concentration, which was related to the catalytic activity but not to cysteine reactivity. These observations suggest that the Cys194 reactivity is negatively affected by a posttranslational modification of the adjacent Tyr193 residue, which interacts with FMN and the substrate in the NbaA catalytic site.
机译:细菌2-硝基还原酶NbaA是引发2-硝基苯甲酸酯(2-NBA)降解的主要酶,其活性受翻译后修饰的控制。迄今为止,NbaA的结构仍有待阐明。在这项研究中,Cys194Ala NbaA突变体的晶体结构确定为1.7-β。解析度。底物类似物2-NBA甲酯用于通过抑制野生型NbaA蛋白来破译底物结合位点。串联质谱显示,2-NBA甲基酯在野生型NbaA的Tyr193残基处产生2-NBA酯键,但在Tyr193Phe突变体中未产生残基。此外,2-NBA甲酯与Tyr193的共价结合降低了肽键上Cys194残基的反应性。 Tyr193羟基被证明是酶催化必不可少的,因为Tyr193Phe突变体导致黄素单核苷酸(FMN)从蛋白质快速解离,并降低了Cys194的反应性。 FMN与NbaA的结合随溶液NaCl浓度的变化而变化,这与催化活性有关,但与半胱氨酸反应性无关。这些观察结果表明,Cys194反应性受到邻近的Tyr193残基的翻译后修饰的负面影响,该残基与FMN和NbaA催化位点的底物相互作用。

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