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Mechanism of N-Hydroxylation Catalyzed by Flavin-Dependent Monooxygenases

机译:黄素依赖性单加氧酶催化N-羟基化反应的机理

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Aspergillus fumigatus siderophore (SidA), a member of class B flavin-dependent monooxygenases, was selected as a model system to investigate the hydroxylation mechanism of heteroatom-containing molecules by this group of enzymes. SidA selectively hydroxylates ornithine to produce N-5-hydroxyornithine. However, SidA is also able to hydroxylate lysine with lower efficiency. In this study, the hydroxylation mechanism and substrate selectivity of SidA were systematically studied using DFT calculations. The data show that the hydroxylation reaction is initiated by homolytic cleavage of the O-O bond in the C-4a-hydroperoxyflavin intermediate, resulting in the formation of an internal hydrogen-bonded hydroxyl radical (HO center dot). As the HO center dot moves to the ornithine N-5 atom, it rotates and donates a hydrogen atom to form the C-4a-hydroxyflavin. Oxygen atom transfer yields an aminoxide, which is subsequently converted to hydroxylamine via water-mediated proton shuttling, with the water molecule originating from dehydration of the C-4a-hydroxyflavin. The selectivity of SidA for ornithine is predicted to be the result of the lower energy barrier for oxidation of ornithine relative to that of lysine (16 vs 24 kcal/mol, respectively), which is due to the weaker stabilizing hydrogen bond between the incipient HO center dot and O3' of the ribose ring of NADP(+) in the transition state for lysine.
机译:选择B类黄素依赖性单加氧酶的成员烟曲霉铁载体(SidA)作为模型系统,以研究这组酶对含杂原子分子的羟基化机理的影响。 SidA选择性​​地使鸟氨酸羟基化以产生N-5-羟基鸟氨酸。但是,SidA还能够以较低的效率羟化赖氨酸。在这项研究中,使用DFT计算系统地研究了SidA的羟化机理和底物选择性。数据表明,羟基化反应是通过C-4a-氢过氧黄素中间体中O-O键的均相裂解而引发的,从而形成了内部氢键结合的羟基(HO中心点)。当HO中心点移至鸟氨酸N-5原子时,它旋转并提供氢原子以形成C-4a-羟基黄素。氧原子转移产生氨氧化物,其随后通过水介导的质子穿梭转变为羟胺,其中水分子源自C-4a-羟基黄素的脱水。预测SidA对鸟氨酸的选择性是相对于赖氨酸而言,鸟氨酸氧化的能垒较低(分别为16 vs 24 kcal / mol)的结果,这是由于初始HO之间的稳定氢键较弱NADP(+)核糖环在赖氨酸过渡态的中心点和O3'。

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