Lewis David F V, Lake Brian G, Dickins Maurice, Goldfarb Peter S
School of Biomedical and Life Sciences, University of Surrey, Guildford, Surrey, UK.
Drug Metabol Drug Interact. 2002;19(2):115-35. doi: 10.1515/dmdi.2002.19.2.115.
The results of homology modelling of CYP2B6 based on the CYP2C5 crystal structure is described in terms of substrates and inhibitors binding within the putative active site. In general these results are in agreement with currently available evidence from substrate metabolism, mode of inhibitor action and site-directed mutagenesis experiments within the CYP2B subfamily of enzymes. Consequently, the model based on the CYP2C5 template represents an advance on those models produced from bacterial P450s, such as CYP101 and CYP102. Quantitative Structure-Activity Relationships (QSARs) for substrates binding to CYP2B6 indicate a key role for hydrogen bonding, and lipophilic character, as determined by the log P parameter (where P is the octanol/water partition coefficient), is also of importance for explaining the variation in experimental binding affinity for CYP2B6 substrates. It is possible to estimate the binding energies for typical CYP2B6 substrates based on their properties and interactions with the enzyme, which show good concordance with experimental data in the form of apparent Km values.
基于CYP2C5晶体结构的CYP2B6同源建模结果,从底物和抑制剂在假定活性位点内的结合情况进行了描述。总体而言,这些结果与目前来自底物代谢、抑制剂作用模式以及CYP2B酶亚家族内定点诱变实验的现有证据一致。因此,基于CYP2C5模板的模型相较于那些由细菌P450s(如CYP101和CYP102)构建的模型有了进步。与CYP2B6结合的底物的定量构效关系(QSARs)表明氢键起关键作用,由log P参数(其中P为正辛醇/水分配系数)确定的亲脂性特征对于解释CYP2B6底物实验结合亲和力的变化也很重要。基于典型CYP2B6底物的性质及其与酶的相互作用,可以估算其结合能,这与以表观Km值形式呈现的实验数据显示出良好的一致性。