Lo Sheng-Nan, Shen Chien-Chang, Chang Chia-Yu, Tsai Keng-Chang, Huang Chiung-Chiao, Wu Tian-Shung, Ueng Yune-Fang
Divisions of Basic Chinese Medicine (S.-N.L., C.-Y.C., C.-C.H., Y.-F.U.), Chinese Medicinal Chemistry (C.-C.S.), and Chinese Materia Medica Development (K.-C.T.), National Research Institute of Chinese Medicine, Taipei, Taiwan, Republic of China; Institute of Biopharmaceutical Sciences, School of Life Science (S.-N.L., Y.-F.U.) and Department of Pharmacology, School of Medicine (Y.-F.U.), National Yang-Ming University, Taipei, Taiwan, Republic of China; Institute of Medical Sciences, Taipei Medical University, Taipei, Taiwan, Republic of China (C.-Y.C., Y.-F.U.); and Department of Chemistry, National Chung-Kung University, Tainan, Taiwan, Republic of China (T.-S.W.).
Divisions of Basic Chinese Medicine (S.-N.L., C.-Y.C., C.-C.H., Y.-F.U.), Chinese Medicinal Chemistry (C.-C.S.), and Chinese Materia Medica Development (K.-C.T.), National Research Institute of Chinese Medicine, Taipei, Taiwan, Republic of China; Institute of Biopharmaceutical Sciences, School of Life Science (S.-N.L., Y.-F.U.) and Department of Pharmacology, School of Medicine (Y.-F.U.), National Yang-Ming University, Taipei, Taiwan, Republic of China; Institute of Medical Sciences, Taipei Medical University, Taipei, Taiwan, Republic of China (C.-Y.C., Y.-F.U.); and Department of Chemistry, National Chung-Kung University, Tainan, Taiwan, Republic of China (T.-S.W.)
Drug Metab Dispos. 2015 Jul;43(7):1100-7. doi: 10.1124/dmd.115.063966. Epub 2015 May 7.
The protoberberine alkaloid berberine carries methylenedioxy moiety and exerts a variety of pharmacological effects, such as anti-inflammation and lipid-lowering effects. Berberine causes potent CYP1B1 inhibition, whereas CYP1A2 shows resistance to the inhibition. To reveal the influence of oxidative metabolism on CYP1 inhibition by berberine, berberine oxidation and the metabolite-mediated inhibition were determined. After NADPH-fortified preincubation of berberine with P450, the inhibition of CYP1A1 and CYP1B1 variants (CYP1B1.1, CYP1B1.3, and CYP1B1.4) by berberine was not enhanced, and CYP1A2 remained resistant. Demethyleneberberine was identified as the most abundant metabolite of CYP1A1- and CYP1B1-catalyzed oxidations, and thalifendine was generated at a relatively low rate. CYP1A1-catalyzed berberine oxidation had the highest maximal velocity (V max) and exhibited positive cooperativity, suggesting the assistance of substrate binding when the first substrate was present. In contrast, the demethylenation by CYP1B1 showed the property of substrate inhibition. CYP1B1-catalyzed berberine oxidation had low K m values, but it had V max values less than 8% of those of CYP1A1. The dissociation constants generated from the binding spectrum and fluorescence quenching suggested that the low K m values of CYP1B1-catalyzed oxidation might include more than the rate constants describing berberine binding. The natural protoberberine/berberine fmetabolites with methylenedioxy ring-opening (palmatine, jatrorrhizine, and demethyleneberberine) and the demethylation (thalifendine and berberrubine) caused weak CYP1 inhibition. These results demonstrated that berberine was not efficiently oxidized by CYP1B1, and metabolism-dependent irreversible inactivation was minimal. Metabolites of berberine caused a relatively weak inhibition of CYP1.
原小檗碱生物碱黄连素带有亚甲二氧基部分,并具有多种药理作用,如抗炎和降脂作用。黄连素对CYP1B1有强效抑制作用,而CYP1A2对该抑制作用具有抗性。为了揭示氧化代谢对黄连素抑制CYP1的影响,对黄连素氧化及代谢物介导的抑制作用进行了测定。用P450对黄连素进行NADPH强化预孵育后,黄连素对CYP1A1和CYP1B1变体(CYP1B1.1、CYP1B1.3和CYP1B1.4)的抑制作用未增强,CYP1A2仍具有抗性。去亚甲基黄连素被鉴定为CYP1A1和CYP1B1催化氧化的最丰富代谢物,而thalifendine的生成速率相对较低。CYP1A1催化的黄连素氧化具有最高的最大反应速度(V max)并表现出正协同性,表明当第一个底物存在时底物结合得到了促进。相比之下,CYP1B1的去亚甲基化表现出底物抑制特性。CYP1B1催化的黄连素氧化具有较低的米氏常数(K m)值,但其V max值不到CYP1A1的8%。结合光谱和荧光猝灭产生的解离常数表明,CYP1B1催化氧化的低K m值可能包含了比描述黄连素结合的速率常数更多的信息。具有亚甲二氧基开环(巴马汀、药根碱和去亚甲基黄连素)和去甲基化(thalifendine和小檗红碱)的天然原小檗碱/黄连素代谢物对CYP1的抑制作用较弱。这些结果表明,黄连素不能被CYP1B1有效氧化,代谢依赖性不可逆失活作用极小。黄连素的代谢物对CYP1的抑制作用相对较弱。