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Predicting Drug Metabolism: A Site of Metabolism Prediction Tool Applied to the Cytochrome P450 2C9

机译:预测药物代谢:一个应用于细胞色素P450 2C9的代谢预测工具

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摘要

The aim of the present study is to develop a method for predicting the site at which molecules will be metabolized by CYP 2C9 (cytochrome P450 2C9) using a previously reported protein homology model of the enzyme. Such a method would be of great help in designing new compounds with a better pharmacokinetic profile, or in designing prodrugs where the compound needs to be metabolized in order to become active. The methodology is based on a comparison between alignment-independent descriptors derived from GRID Molecular Interaction Fields for the CYP 2C9 active site, and a distance-based representation of the substrate. The predicted site of metabolism is reported as a ranking list of all the hydrogen atoms of each substrate molecule. Eighty-seven CYP 2C9-catalyzed oxidative reactions reported in the literature have been analyzed. In more than 90% of these cases, the hydrogen atom ranked at the first, second, or third position was the experimentally reported site of oxidation.
机译:本研究的目的是开发一种方法,该方法使用先前报道的酶的蛋白质同源性模型预测分子将被CYP 2C9(细胞色素P450 2C9)代谢的位点。这种方法在设计具有更好药代动力学特征的新化合物或设计需要代谢该化合物以使其具有活性的前药方面将大有帮助。该方法是基于对CYP 2C9活性位点的GRID分子相互作用域得出的与序列无关的描述子与底物的基于距离的表示之间的比较。预测的代谢位点被报告为每个底物分子所有氢原子的排名列表。分析了文献报道的八十七种CYP 2C9催化的氧化反应。在超过90%的情况下,排名第一,第二或第三位的氢原子是实验报告的氧化位点。

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