Tan Y, Patten C J, Smith T, Yang C S
Laboratory for Cancer Research, College of Pharmacy, Rutgers University, Piscataway, New Jersey 08854, USA.
Arch Biochem Biophys. 1997 Jun 1;342(1):82-91. doi: 10.1006/abbi.1997.9995.
The present study investigated the interactions between cytochrome P450 (P450) enzymes and the NADPH:cytochrome oxidoreductase (OR) in the microsomal membrane. Microsomes containing human cytochrome P450 2A6 (h2A6) coexpressed with human OR (hOR) via a baculovirus expression system displayed coumarin hydroxylase activity with apparent Km and Vmax values of 0.41 microM and 4.05 nmol/min/nmol P450, respectively. Incorporation of purified rat liver cytochrome b5 (b5) into the microsomes increased the Vmax 2.5-fold, but did not affect the Km. The N-nitrosodimethylamine (NDMA) demethylase activity of human cytochrome P450 2E1 (h2E1) coexpressed similarly was characterized previously. Coumarin was shown not to be a substrate nor an inhibitor of h2E1, and NDMA was not a substrate nor an inhibitor of h2A6. In microsomes containing h2A6, h2E1, and hOR (M-h2A6-h2E1-hOR) obtained from a triple expression system, the two P450 enzymes were shown to compete with each other for interaction with hOR. In incubations with M-h2A6-h2E1-hOR, the presence of a h2A6 substrate (coumarin) decreased NDMA demethylase activity by a maximum of 47%, and the presence of a h2E1 substrate (NDMA) decreased coumarin hydroxylase activity by a maximum of 19%. This substrate-induced competition between h2A6 and h2E1 was decreased by the addition of purified b5. In the absence of a substrate, the NADPH-dependent H2O2 formation was high in both M-h2A6-h2E1-hOR and M-h2E1-hOR, but low in M-h2A6-hOR. The addition of NDMA had little effect on the H2O2 formation in M-h2A6-h2E1-hOR and M-h2E1-hOR. The addition of coumarin, however, slightly decreased H2O2 formation in M-h2A6-h2E1-hOR, but drastically increased H2O2 formation in M-h2A6-hOR. These results suggest that the presence of a h2A6 substrate decreased the electron flow to h2E1 in M-h2A6-h2E1-hOR. The activities of coumarin hydroxylase and NDMA demethylase of M-h2A6-h2E1-hOR were decreased and increased, respectively, by an increase in ionic strength. The ionic strength, however, did not drastically change the substrate-induced competition between h2A6 and h2E1 for hOR. The results demonstrate the usefulness of the coexpression system for mechanistic studies and illustrate that the interaction of monooxygenase enzymes in the microsomal membrane is regulated by the presence of substrates and b5.
本研究调查了微粒体膜中细胞色素P450(P450)酶与NADPH:细胞色素氧化还原酶(OR)之间的相互作用。通过杆状病毒表达系统与人OR(hOR)共表达的含有人类细胞色素P450 2A6(h2A6)的微粒体显示出香豆素羟化酶活性,其表观Km和Vmax值分别为0.41微摩尔和4.05纳摩尔/分钟/纳摩尔P450。将纯化的大鼠肝细胞色素b5(b5)掺入微粒体中可使Vmax增加2.5倍,但不影响Km。先前已对类似共表达的人类细胞色素P450 2E1(h2E1)的N-亚硝基二甲胺(NDMA)脱甲基酶活性进行了表征。结果表明,香豆素既不是h2E1的底物也不是其抑制剂,而NDMA既不是h2A6的底物也不是其抑制剂。在从三重表达系统获得的含有h2A6、h2E1和hOR的微粒体(M-h2A6-h2E1-hOR)中,两种P450酶显示出相互竞争与hOR相互作用。在与M-h2A6-h2E1-hOR一起孵育时,h2A6底物(香豆素)的存在使NDMA脱甲基酶活性最多降低47%,而h2E1底物(NDMA)的存在使香豆素羟化酶活性最多降低19%。添加纯化的b5可降低h2A6和h2E1之间这种底物诱导的竞争。在没有底物的情况下,M-h2A6-h2E1-hOR和M-h2E1-hOR中NADPH依赖性H2O2的形成较高,但在M-h2A6-hOR中较低。添加NDMA对M-h2A6-h2E1-hOR和M-h2E1-hOR中H2O2的形成影响不大。然而,添加香豆素会使M-h2A6-h2E1-hOR中H2O2的形成略有降低,但会使M-h2A6-hOR中H2O2的形成大幅增加。这些结果表明,h2A6底物的存在减少了M-h2A6-h2E1-hOR中流向h2E1的电子流。M-h2A6-h2E1-hOR的香豆素羟化酶和NDMA脱甲基酶活性分别因离子强度的增加而降低和增加。然而,离子强度并没有显著改变h2A6和h2E1对hOR的底物诱导竞争。结果证明了共表达系统在机制研究中的有用性,并表明微粒体膜中单一加氧酶的相互作用受底物和b5的存在调节。