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首页> 外文期刊>Journal of Medicinal Chemistry >Use of density functional calculations to predict the regioselectivity of drugs and molecules metabolized by aldehyde oxidase
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Use of density functional calculations to predict the regioselectivity of drugs and molecules metabolized by aldehyde oxidase

机译:使用密度泛函计算预测被醛氧化酶代谢的药物和分子的区域选择性

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摘要

Aldehyde oxidase is a molybdenum hydroxylase that catalyzes the oxidation of aldehydes and nitrogen-containing heterocycles. The enzyme plays a dual role in the metabolism of physiologically important endogenous compounds and the biotransformation of xenobiotics. Using density functional theory methods, geometry optimization of tetrahedral intermediates of drugs and druglike compounds was examined to predict the likely metabolites of aldehyde oxidase. The calculations suggest that the lowest energy tetrahedral intermediate resulting from the initial substrate corresponds to the observed metabolite >= 90% of the time. Additional calculations were performed on a series of heterocyclic compounds where the products resulting from metabolism by xanthine oxidase and aldehyde oxidase differ in many instances. Again, the lowest energy tetrahedral intermediate corresponded to the observed product of aldehyde oxidase metabolism >= 90% for the compounds examined, while the observed products of xanthine oxidase were not well predicted.
机译:醛氧化酶是一种钼羟化酶,可催化醛类和含氮杂环的氧化。该酶在生理学上重要的内源性化合物的代谢和异源生物的生物转化中起着双重作用。使用密度泛函理论方法,对药物和类药物化合物的四面体中间体的几何优化进行了研究,以预测醛氧化酶的可能代谢产物。计算表明,由初始底物产生的最低能量的四面体中间体对应于> 90%的时间观察到的代谢产物。对一系列杂环化合物进行了额外的计算,其中在许多情况下,由黄嘌呤氧化酶和醛氧化酶代谢产生的产物不同。再次,最低能量的四面体中间体对应于所检查的化合物的醛氧化酶代谢的观察到的产物≥90%,而黄嘌呤氧化酶的观察到的产物没有被很好地预测。

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