Ding S, Yao D, Deeni Y Y, Burchell B, Wolf C R, Friedberg T
Biomedical Research Centre, Ninewells Hospital and Medical School, Dundee DD1 9SY, UK.
Biochem J. 2001 Jun 1;356(Pt 2):613-9. doi: 10.1042/0264-6021:3560613.
NADPH-P450 oxidoreductase (CPR) is essential for the activity of cytochrome P450 (P450). Previous studies demonstrated that CPR regulates the levels of various P450 isoforms in vitro. We investigated the mechanistic basis for this regulation. By transfection of Chinese hamster ovary DUKXB11 cells we obtained the cell line DUKX/2D6, which expressed human CYP2D6, a P450 isoform. Subsequently, DUKX/2D6 cells were transfected with human CPR cDNA to generate the cell line DUKX/2D6/CPR-3. Expression of recombinant CPR decreased the level of spectrally detectable CYP2D6 holoprotein in DUKX/2D6/CPR-3 cells by 70%, whereas the level of immunodetectable apoprotein remained unchanged. Addition of the radical scavenger DMSO increased levels of CYP2D6 holoenzyme in DUKX/2D6/CPR-3 cells but not in DUKX/2D6 cells. A similar effect was noted when cells were grown in the presence of hemin. Importantly, combined treatment with DMSO and hemin increased levels of CYP2D6 holoenzyme in DUKX/2D6/CPR-3 but not in DUKX/2D6 cells even further than either treatment alone. None of these treatments affected the level of immunodetectable CYP2D6. This demonstrates that expression of CPR increases production of damaging radicals but also that CPR may alter haem homoeostasis. In agreement with this, the activity of haem oxygenase, a rate-limiting enzyme in haem metabolism, was compared with that in DUKX/DHFR control cells (expressing dihydrofolate reductase), and was 3-fold higher in DUKX/2D6/CPR-3 but similar in DUKX/2D6 cells. Furthermore, treatment of cells with sodium arsenite increased levels of haem oxygenase concomitant with a marked decrease of spectrally detectable CYP2D6 and a rise in levels of ferritin, which sequesters free iron released from the destruction of haem. These data demonstrate that CPR regulates P450 activity by supplying electrons and also by altering P450 levels via radical-and haem oxygenase-mediated pathways.
NADPH - 细胞色素P450氧化还原酶(CPR)对于细胞色素P450(P450)的活性至关重要。先前的研究表明,CPR在体外可调节多种P450同工型的水平。我们研究了这种调节的机制基础。通过转染中国仓鼠卵巢DUKXB11细胞,我们获得了表达人CYP2D6(一种P450同工型)的细胞系DUKX/2D6。随后,将人CPR cDNA转染到DUKX/2D6细胞中,以产生细胞系DUKX/2D6/CPR - 3。重组CPR的表达使DUKX/2D6/CPR - 3细胞中光谱可检测的CYP2D6全蛋白水平降低了70%,而免疫可检测的脱辅基蛋白水平保持不变。添加自由基清除剂二甲基亚砜(DMSO)可增加DUKX/2D6/CPR - 3细胞中CYP2D6全酶的水平,但对DUKX/2D6细胞无此作用。当细胞在血红素存在下生长时,也观察到了类似的效果。重要的是,DMSO和血红素联合处理使DUKX/2D6/CPR - 3细胞中CYP2D6全酶的水平进一步升高,甚至比单独任何一种处理的效果都更显著。这些处理均未影响免疫可检测的CYP2D6水平。这表明CPR的表达增加了有害自由基的产生,但也可能改变了血红素稳态。与此一致的是,将血红素代谢中的限速酶血红素加氧酶的活性与DUKX/DHFR对照细胞(表达二氢叶酸还原酶)中的活性进行比较,发现其在DUKX/2D6/CPR - 3细胞中高出3倍,而在DUKX/2D6细胞中相似。此外,用亚砷酸钠处理细胞可增加血红素加氧酶的水平,同时光谱可检测的CYP2D6水平显著降低,铁蛋白水平升高,铁蛋白可螯合从血红素破坏中释放的游离铁。这些数据表明,CPR通过提供电子以及通过自由基和血红素加氧酶介导的途径改变P450水平来调节P450活性。