The Identification of De-Alkylation Reactions Catalysed by Cytochrome P450 using Pharmacophore Three-dimensional Structure

L. L. Jones, B. Howlin, D. Povey
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Abstract

Quantitative structure activity relationships (QSAR) and pharmacophore three-dimensional structure modelling provide possible methods for understanding the first pass metabolism of human cytochrome P450 substrates in the absence of reliable crystal structures of the human enzymes. The increasing need for alternative and objective methods of metabolism prediction has developed into computational approaches to the problem of understanding the enzyme and substrate behaviour. By analysis of the three-dimensional structure known to be catalysed by human P450 and comparison to other substrates involved in similar alkyl removal reactions, along with the alignment of molecular interaction potentials (MIP), a common template for specific dealkylations is proposed.
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利用药效团三维结构鉴定细胞色素P450催化的去烷基化反应
定量构效关系(QSAR)和药效团三维结构建模为了解人类细胞色素P450底物在缺乏可靠晶体结构的情况下的首过代谢提供了可能的方法。对替代和客观的代谢预测方法的日益增长的需求已经发展成为理解酶和底物行为问题的计算方法。通过分析已知由人类P450催化的三维结构,并与参与类似烷基去除反应的其他底物进行比较,以及分子相互作用电位(MIP)的排列,提出了特定脱烷基反应的通用模板。
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