Lewis David F V, Dickins Maurice, Lake Brian G, Goldfarb Peter S
School of Biomedical and Molecular Sciences, University of Surrey, Guildford, Surrey, UK.
Drug Metabol Drug Interact. 2003;19(3):189-210. doi: 10.1515/dmdi.2003.19.3.189.
The results of homology modelling of CYP2D6 based on the mammalian P450 crystal structure of rabbit CYP2C5 are reported. It is found that many CYP2D6-selective substrates are able to fit closely within the putative active site of the enzyme where there are favourable contacts with complementary amino acid residues, including aspartate-301 which has been probed via site-directed mutagenesis. The homology model of CYP2D6 is consistent with available experimental evidence from selective substrate metabolism and site-specific mutation data. Quantitative structure-activity relationships (QSARs) with substrate binding affinity based on KD values and inhibition data (Ki values) demonstrate the importance of hydrogen bonding, pi-pi stacking and relative molecular mass in describing variations in avidity towards the CYP2D6 enzyme, although the compound lipophilicity (log D(7.4)) appears to be the most important single descriptor for CYP2D6 inhibition. Calculation of substrate binding affinity based on contributions from active site interactions and lipophilic character gives satisfactory agreement with experimentally determined KD values.
报道了基于兔CYP2C5的哺乳动物P450晶体结构对CYP2D6进行同源建模的结果。研究发现,许多CYP2D6选择性底物能够紧密契合该酶的假定活性位点,在那里与互补氨基酸残基存在有利的相互作用,包括已通过定点诱变研究的天冬氨酸-301。CYP2D6的同源模型与来自选择性底物代谢和位点特异性突变数据的现有实验证据一致。基于KD值的底物结合亲和力和抑制数据(Ki值)的定量构效关系(QSARs)表明,氢键、π-π堆积和相对分子质量在描述对CYP2D6酶的亲和力变化中具有重要性,尽管化合物亲脂性(log D(7.4))似乎是CYP2D6抑制的最重要单一描述符。基于活性位点相互作用和亲脂特性贡献计算的底物结合亲和力与实验测定的KD值具有良好的一致性。