Kent Ute M, Aviram Michael, Rosenblat Mira, Hollenberg Paul F
Department of Pharmacology, the University of Michigan, MI 48109-0632, USA.
Drug Metab Dispos. 2002 Jun;30(6):709-15. doi: 10.1124/dmd.30.6.709.
The potent antioxidants licorice root extract and glabridin, an isoflavan purified from licorice root extract, were tested for their ability to modulate the activities of several cytochrome P450 (P450) enzymes. P450 3A4, the major human drug metabolizing P450 enzyme, was inactivated by licorice root extract and by glabridin in a time-and concentration-dependent manner. The inactivation was NADPH-dependent and was not reversible by extensive dialysis. Further analysis showed that the loss in enzymatic activity correlated with a loss in the P450-reduced CO spectrum and with a loss of the intact heme moiety. In contrast, incubations of P450 3A4 with similar concentrations of 2,4-dimethylglabridin and NADPH did not lead to inactivation of P450 3A4. P450 2B6 was also inactivated by glabridin in a time- and concentration-dependent manner. The majority of the glabridin-inactivated P450 2B6 was able to form a reduced CO spectrum suggesting that the heme was not modified with this isoform. High-performance liquid chromatography analysis of the P450 heme confirmed that incubations with glabridin and NADPH did not result in the destruction of the heme moiety. The activity of P450 2C9 was competitively inhibited by glabridin, whereas P450 2D6 and P450 2E1 were virtually unaffected. The data show that glabridin can serve as a substrate for at least three human P450 enzymes and that depending on the isoform, metabolism of glabridin can lead to mechanism-based inactivation or inhibition of the P450. Heme and reduced CO spectral analysis also indicated that glabridin inactivated P450s 2B6 and 3A4 by different mechanisms.
对甘草根提取物和光甘草定(一种从甘草根提取物中纯化得到的异黄酮)这两种强效抗氧化剂调节几种细胞色素P450(P450)酶活性的能力进行了测试。P450 3A4是主要的人体药物代谢P450酶,被甘草根提取物和光甘草定以时间和浓度依赖性方式灭活。这种灭活依赖于NADPH,且通过广泛透析不可逆转。进一步分析表明,酶活性的丧失与P450还原型CO光谱的丧失以及完整血红素部分的丧失相关。相反,将P450 3A4与相似浓度的2,4 - 二甲基光甘草定和NADPH一起孵育不会导致P450 3A4的失活。P450 2B6也被光甘草定以时间和浓度依赖性方式灭活。大多数被光甘草定灭活的P450 2B6能够形成还原型CO光谱,这表明该同工型的血红素未被修饰。对P450血红素的高效液相色谱分析证实,与光甘草定和NADPH一起孵育不会导致血红素部分的破坏。P450 2C9的活性受到光甘草定的竞争性抑制,而P450 2D6和P450 2E1几乎不受影响。数据表明,光甘草定可作为至少三种人体P450酶的底物,并且根据同工型的不同,光甘草定的代谢可导致基于机制的P450失活或抑制。血红素和还原型CO光谱分析还表明,光甘草定通过不同机制使P450 2B6和3A4失活。