Kuemmerle S C, Shen T, Hollenberg P F
Department of Pathology, Northwestern University Medical School.
Drug Metab Dispos. 1994 May-Jun;22(3):343-51.
Metabolism of N-methylcarbazole by purified rat liver cytochrome P-450 2B1 or rabbit liver P-450 2B4 resulted in the inactivation of these enzymes in a time-dependent, pseudo-first order manner as assayed spectrally by the decrease in the reduced CO spectrum at 450 nm. The inactivation was saturable with respect to the concentration of N-methylcarbazole, and a Ki = 5.2 microM and kINACT = 0.14 min-1 were determined for the inactivation of P-450 2B1. For P-450 2B4 inactivation, the Ki was 23 microM and the kINACT = 0.21 min-1. There was no increase in the reduced CO spectrum at 420 nm accompanying the inactivation, and the slight loss of the P-450 heme prosthetic group, as determined by the spectrum at 418 nm, was not sufficient to account for the loss of the reduced CO spectrum at 450 nm. The metabolism of N-methylcarbazole by P-450 did not result in the formation of a metabolic intermediate complex, which could also be responsible for the loss of cytochrome P-450 activity. Loss of catalytic activity for further substrate metabolism was also observed after preincubation of enzyme with N-methylcarbazole and the loss of catalytic activity correlated with the loss of the reduced CO spectrum. Accompanying the loss of spectrally detectable P-450 2B1 and P-450 2B4 catalytic activity, there was an increase in the NADPH oxidation rate. This increased rate persisted on subsequent addition of NADPH.
纯化的大鼠肝脏细胞色素P-450 2B1或兔肝脏P-450 2B4对N-甲基咔唑的代谢导致这些酶以时间依赖性的假一级反应方式失活,通过在450nm处还原型CO光谱的降低进行光谱测定。失活对N-甲基咔唑的浓度呈饱和性,测定P-450 2B1失活的Ki = 5.2μM,kINACT = 0.14 min-1。对于P-450 2B4失活,Ki为23μM,kINACT = 0.21 min-1。失活过程中420nm处还原型CO光谱没有增加,通过418nm光谱测定的P-450血红素辅基的轻微损失不足以解释450nm处还原型CO光谱的损失。P-450对N-甲基咔唑的代谢没有导致形成代谢中间复合物,而代谢中间复合物也可能导致细胞色素P-450活性的丧失。在用N-甲基咔唑预孵育酶后,也观察到对进一步底物代谢的催化活性丧失,并且催化活性的丧失与还原型CO光谱的丧失相关。伴随着光谱可检测的P-450 2B1和P-450 2B4催化活性的丧失,NADPH氧化速率增加。在随后添加NADPH时,这种增加的速率持续存在。