首页> 外文期刊>International Journal of Quantum Chemistry >Quantum chemical simulation of cytochrome p450 catalyzed aromatic oxidation: Metabolism, toxicity, and biodegradation of benzene derivatives
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Quantum chemical simulation of cytochrome p450 catalyzed aromatic oxidation: Metabolism, toxicity, and biodegradation of benzene derivatives

机译:细胞色素p450催化的芳香族氧化的量子化学模拟:苯衍生物的代谢,毒性和生物降解

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The dependences of biological oxidation and toxicity of the mono- and multisubstituted benzene derivatives on the nature of substituents are studied using an oxenoid model and the quantum chemical calculations. According to this model, the P450 enzyme breaks the dioxygen molecules and generates the active atomic oxygen species (oxens); these species readily react with substrates. Using MO LCAO MNDO approach, we calculated the differences Delta E of the total energies of aromatic compounds and corresponding arene oxides containing tetrahedrally coordinated carbon atoms. We obtained that the Delta E values determine the positions of the enzyme mediated oxidation, rate of substrate biotransformation, and toxicity of the benzene derivatives. In addition to the "dynamic" reactivity index Delta E related to the enzyme-mediated substrate biotransformation, we calculated marry standard "static" reactivity indices, corresponding to the substrate molecules in the starting equilibrium geometry (the energies of the occupied and unoccupied MOs, the effective atomic charges, the free valence indices, and the superdelocalizabilities). The arene oxide stability Delta E parameter is shown to be the most adequate characteristic of both the biological oxidation process and toxicity of benzenes. The Delta E parameters were also used successfully to describe the features of di- and trichlorinated biphenyls bacterial metabolism. (c) 2007 Wiley Periodicals, Inc.
机译:使用苯类化合物模型和量子化学计算研究了单取代和多取代苯衍生物的生物氧化和毒性对取代基性质的依赖性。根据该模型,P450酶破坏了双氧分子并产生了活性原子氧(氧)。这些物质容易与底物反应。使用MO LCAO MNDO方法,我们计算出芳族化合物与相应的含四面体配位碳原子的芳烃氧化物的总能量之差DeltaE。我们获得的Delta E值确定酶介导的氧化的位置,底物生物转化的速率和苯衍生物的毒性。除了与酶介导的底物生物转化有关的“动态”反应性指数Delta E之外,我们还计算了与标准“静态”反应性指数相结合的标准值,该指数对应于起始平衡几何结构中的底物分子(占据和未占据的MO的能量,有效原子电荷,自由价指数和超局域性)。氧化芳烃稳定性ΔE参数被证明是生物氧化过程和苯毒性的最充分的特征。 Delta E参数也已成功用于描述二氯化和三氯化联苯细菌代谢的特征。 (c)2007年Wiley Periodicals,Inc.

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