Weaver Richard, Graham Ken S, Beattie Iain G, Riley Rob J
Physical & Metabolic Science, AstraZeneca R&D Charnwood, Bakewell Road, Loughborough UK LE11 5RH.
Drug Metab Dispos. 2003 Jul;31(7):955-66. doi: 10.1124/dmd.31.7.955.
Detailed cytochrome P450 (P450) inhibition profiles are now required for the registration of novel molecular entities. This method uses combined substrates (phenacetin, diclofenac, S-mephenytoin, bufuralol, and midazolam) with combined recombinant P450 enzymes (CYP1A2, 2C9, 2C19, 2D6, and 3A4) in an attempt to limit interactions with other more minor P450s and associated reductases. Kinetic analysis of single substrate with single P450 (sP450) yielded apparent Km values of 25, 2, 20, 9, and 3 microM, for CYP1A2, 2C9, 2C19, 2D6, and 3A4, respectively. Combined substrates with combined P450s (cP450) yielded apparent Km values of 65, 4, 19, 7, and 2 microM. Selectivity of the substrates for each P450 isoform was checked. Phenacetin proved to be the least selective substrate. However, the ratio of the various P450s was modified in the final assay such that metabolism of phenacetin by other enzymes was approximately 20% of the metabolism by CYP1A2. IC50 determinations with alpha-naphthoflavone (0.04 microM), sulfaphenazole (0.26 microM), tranylcypromine (9 microM), quinidine (0.02 microM), and ketoconazole (0.01 microM) were similar for sP450 and cP450 enzymes. The assay was further evaluated with 11 literature compounds and 52 in-house new chemical entities, and the data compared with radiometric/fluorescent values. The overall protein level of the assay was reduced from the original starting point, as this led to some artificially high IC50 measurements when compared with existing lower protein assays (radiometric/fluorometric). This method offers high throughput P450 inhibition profiling with potential advantages over current radiometric or fluorometric methods.
新型分子实体注册现在需要详细的细胞色素P450(P450)抑制谱。该方法使用组合底物(非那西丁、双氯芬酸、S-美芬妥英、布非洛尔和咪达唑仑)与组合重组P450酶(CYP1A2、2C9、2C19、2D6和3A4),试图限制与其他次要P450和相关还原酶的相互作用。单底物与单P450(sP450)的动力学分析得出,CYP1A2、2C9、2C19、2D6和3A4的表观Km值分别为25、2、20、9和3 microM。组合底物与组合P450(cP450)得出的表观Km值分别为65、4、19、7和2 microM。检查了每种P450同工型底物的选择性。结果证明非那西丁是选择性最低的底物。然而,在最终测定中改变了各种P450的比例,以使其他酶对非那西丁的代谢约为CYP1A2代谢的20%。用α-萘黄酮(0.04 microM)、磺胺苯吡唑(0.26 microM)、反苯环丙胺(9 microM)、奎尼丁(0.02 microM)和酮康唑(0.01 microM)测定的sP450和cP450酶的IC50相似。用11种文献化合物和52种内部新化学实体对该测定进行了进一步评估,并将数据与放射性/荧光值进行了比较。该测定的总体蛋白质水平比原始起点有所降低,因为与现有的较低蛋白质测定(放射性/荧光测定)相比,这导致了一些人为的高IC50测量值。该方法提供了高通量P450抑制谱,与当前的放射性或荧光方法相比具有潜在优势。