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首页> 外文期刊>Biochemistry >Biochemical characterization of a flavin adenine dinculeotide-dependent monooxygenase, ornithine hydroxylase from Pseudomonas aeruginosa, suggests a novel reaction mechanism
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Biochemical characterization of a flavin adenine dinculeotide-dependent monooxygenase, ornithine hydroxylase from Pseudomonas aeruginosa, suggests a novel reaction mechanism

机译:黄素腺嘌呤依赖于铜绿假单胞菌的单加氧酶,鸟氨酸羟化酶从铜绿假单胞菌的生化特征表明一种新的反应机制

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摘要

Pyoverdin is the hydroxamate siderophore produced by the opportunistic pathogen Pseudomonas aeruginosa under the iron-limiting conditions of the human host. This siderophore includes derivatives of ornithine in the peptide backbone that serve as iron chelators. PvdA is the ornithine hydroxylase, which performs the first enzymatic step in preparation of these derivatives. PvdA requires both flavin adenine dinucleotide (FAD) and nicotinamide adenine dinucleotide phosphate (NADPH) for activity; it was found to be a soluble monomer most active at pH 8.0. The enzyme demonstrated Michaelis-Menten kinetics in an NADPH oxidation assay, but a hydroxylation assay indicated substrate inhibition at high ornithine concentration. PvdA is highly specific for both substrate and coenzyme, and lysine was shown to be a nonsubstrate effector and mixed inhibitor of the enzyme with respect to ornithine. Chloride is a mixed inhibitor of PvdA with respect to ornithine but a competitive inhibitor with respect to NADPH, and a bulky mercurial compound (p-chloromercuribenzoate) is a mixed inhibitor with respect to ornithine. Steady-state experiments indicate that PvdA/FAD forms a ternary complex with NADPH and ornithine for catalysis. PvdA in the absence of ornithine shows slow substrate-independent flavin reduction by NADPH. Biochemical comparison of PvdA to p-hydroxybenzoate hydroxylase (PHBH, from Pseudomonas fluorescens) and flavin-containing monooxygenases (FMOs, from Schizosaccharomyces pombe and hog liver microsomes) leads to the hypothesis that PvdA catalysis proceeds by a novel reaction mechanism.
机译:Pyoverdin是由机会病原体铜绿假单胞菌在人类宿主的铁限制条件下产生的异羟肟酸铁载体。该铁载体在肽主链中包含鸟氨酸的衍生物,其充当铁螯合剂。 PvdA是鸟氨酸羟化酶,在制备这些衍生物时执行第一步酶促步骤。 PvdA需要黄素腺嘌呤二核苷酸(FAD)和烟酰胺腺嘌呤二核苷酸磷酸(NADPH)才能发挥活性;发现它是在pH 8.0时最具活性的可溶性单体。该酶在NADPH氧化分析中显示出Michaelis-Menten动力学,但是羟化分析表明在高鸟氨酸浓度下底物被抑制。 PvdA对底物和辅酶均具有高度特异性,并且赖氨酸相对于鸟氨酸显示是该酶的非底物效应物和混合抑制剂。氯化物相对于鸟氨酸是PvdA的混合抑制剂,而相对于NADPH是竞争性抑制剂,而大体积的汞化合物(对氯巯基苯甲酸酯)是相对于鸟氨酸的混合抑制剂。稳态实验表明,PvdA / FAD与NADPH和鸟氨酸形成三元络合物进行催化。在缺少鸟氨酸的情况下,PvdA的NAD​​PH显示缓慢的与底物无关的黄素减少。 PvdA与对羟基苯甲酸羟化酶(PHBH,荧光假单胞菌)和含黄素的单加氧酶(FMOs,粟酒裂殖酵母和猪肝微粒体)的生化比较导致了一个假说,即PvdA催化是通过一种新颖的反应机理进行的。

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