Hayashi K, Sakaki T, Kominami S, Inouye K, Yabusaki Y
Biotechnology Laboratory, Sumitomo Chemical Company, Ltd., Hyogo, Japan.
Arch Biochem Biophys. 2000 Sep 1;381(1):164-70. doi: 10.1006/abbi.2000.1953.
Human hepatic cytochrome P450 3A4 (CYP3A4) was expressed in yeast Saccharomyces cerevisiae. While the expression level was high as compared with other human hepatic cytochrome P450s, CYP3A4 showed almost no catalytic activity toward testosterone. Coexpression of CYP3A4 with yeast NADPH-P450 reductase did not give a full activity. Low monooxygenase activity of CYP3A4 was attributed to the insufficient reduction of heme iron of CYP3A4 by NADPH-P450 reductase. To enhance the efficiency of electron transfer from NADPH-P450 reductase to CYP3A4, a fused enzyme was constructed between CYP3A4 and yeast NADPH-P450 reductase. The rapid reduction of the heme iron of the fused enzyme by NADPH was observed. The fused enzyme showed a high testosterone 6beta-hydroxylation activity with a sigmoidal velocity saturation curve. However, the coupling efficiency between NADPH utilization and testosterone 6beta-hydroxylation was only 10%. Finally, coexpression of the fused enzyme and human cytochrome b5 was examined. A significant decrease in the Km value and a remarkable increase in the coupling efficiency were observed. Substrate-induced spectra revealed that the dissociation constant of the fused enzyme for testosterone significantly decreased with coexpression of human cytochrome b5. These results strongly suggest that human cytochrome b5 directly interacts with the CYP3A4 domain of the fused enzyme and modifies the tertiary structure of substrate binding pocket, resulting in tight binding of the substrate and high coupling efficiency.
人肝细胞色素P450 3A4(CYP3A4)在酿酒酵母中得到表达。虽然与其他人肝细胞色素P450相比,其表达水平较高,但CYP3A4对睾酮几乎没有催化活性。CYP3A4与酵母NADPH - P450还原酶共表达并未产生完全活性。CYP3A4单加氧酶活性低归因于NADPH - P450还原酶对CYP3A4血红素铁的还原不足。为提高电子从NADPH - P450还原酶向CYP3A4的转移效率,构建了CYP3A4与酵母NADPH - P450还原酶之间的融合酶。观察到NADPH对融合酶血红素铁的快速还原。融合酶呈现出高睾酮6β - 羟基化活性,具有S形速度饱和曲线。然而,NADPH利用与睾酮6β - 羟基化之间的偶联效率仅为10%。最后,检测了融合酶与人细胞色素b5的共表达。观察到Km值显著降低,偶联效率显著提高。底物诱导光谱显示,与人细胞色素b5共表达时,融合酶对睾酮的解离常数显著降低。这些结果强烈表明,人细胞色素b5直接与融合酶的CYP3A4结构域相互作用,并改变底物结合口袋的三级结构,从而导致底物紧密结合和高偶联效率。