Murray M, Zaluzny L, Farrell G C
Arch Biochem Biophys. 1986 Dec;251(2):471-8. doi: 10.1016/0003-9861(86)90354-1.
In order to elucidate the isozyme specificity of complex formation between cytochrome P-450 and the isosafrole metabolite the effect of complex dissociation on different steroid hydroxylation pathways was studied in hepatic microsomal fractions. Isosafrole induction was found to increase the 16 beta- and 7 alpha-hydroxylation of androst-4-ene-3,17-dione approximately 2.8- and 1.7-fold, respectively, whereas the 16 alpha-hydroxylation pathway was decreased to about one-quarter of control activity; 6 beta-hydroxylation was unchanged from control activity. More striking changes were apparent following dissociation of the isosafrole metabolite from its complex with ferricytochrome P-450 by the steroid substrate. Thus an approximate fourfold elevation of 16 beta-hydroxylase activity was observed after displacement and 6 beta-hydroxylation increased about twofold; 7 alpha-hydroxylase activity was decreased to 0.75-fold of undisplaced activity and 16 alpha-hydroxylase activity was unchanged. These data provide convincing evidence that at least two forms of phenobarbital-inducible cytochrome P-450 (cytochromes P-450PB-B and P-450PB/PCN-E) are present to some extent in a catalytically inactive complexed state in isosafrole-induced rat hepatic microsomes. Furthermore, there is now evidence to suggest that the constitutive isozymes cytochrome P-450UT-A and cytochrome P-450UT-F are not complexed to any degree in hepatic microsomes from isosafrole-induced rats.
为了阐明细胞色素P-450与异黄樟素代谢物之间复合物形成的同工酶特异性,在肝微粒体组分中研究了复合物解离对不同类固醇羟化途径的影响。发现异黄樟素诱导使雄甾-4-烯-3,17-二酮的16β-和7α-羟化分别增加约2.8倍和1.7倍,而16α-羟化途径降至对照活性的约四分之一;6β-羟化与对照活性无变化。在用类固醇底物使异黄樟素代谢物与其与高铁细胞色素P-450的复合物解离后,更明显的变化显而易见。因此,在置换后观察到16β-羟化酶活性大约升高了四倍,6β-羟化增加了约两倍;7α-羟化酶活性降至未置换活性的0.75倍,而16α-羟化酶活性未变。这些数据提供了令人信服的证据,表明至少两种苯巴比妥诱导的细胞色素P-450(细胞色素P-450PB-B和P-450PB/PCN-E)在异黄樟素诱导的大鼠肝微粒体中在某种程度上以催化无活性的复合状态存在。此外,现在有证据表明,组成型同工酶细胞色素P-450UT-A和细胞色素P-450UT-F在异黄樟素诱导的大鼠肝微粒体中没有任何程度的复合。