Jellinck P H, Fishman J
Rockefeller University, New York, New York 10021.
Biochemistry. 1988 Aug 9;27(16):6111-6. doi: 10.1021/bi00416a042.
Estradiol and 2-hydroxyestradiol labeled with 3H at different positions in rings A or B were incubated with male rat liver microsomes, and their oxidative transformation was followed by the transfer of 3H into 3H2O. 14C-labeled estrogen or catechol estrogen was used to determine the fraction that becomes bound covalently to microsomal protein. The further metabolism of 2-hydroxyestradiol involves activation of the steroid at C-4 and, to a much lesser extent at C-1, by a cytochrome P-450 mediated reaction as indicated by the effects of NADPH, spermine, SKF-525A, and CO in the microsomal system. Glutathione promoted the loss of 3H from C-4 of either estradiol or 2-hydroxyestradiol but had less effect on this reaction at C-1 and inhibited it at C-6,7. It also abolished the irreversible binding of 14C-labeled estradiol and 2-hydroxyestradiol to microsomal protein. NADPH was needed specifically for glutathione to exert its effect both on the transfer of 3H into 3H2O and on the formation of water-soluble products from catechol estrogen by rat liver microsomes. It could not be replaced by NADP, NAD, or NADH. Ascorbic acid inhibited these enzymatic reactions but did not affect significantly the initial 2-hydroxylation of estradiol. Evidence is also provided for the further hydroxylation of 2-hydroxyestradiol at C-6 (or C-7). These results indicate that cytochrome P-450 activates catechol estrogens by an electron abstraction process.
将在A环或B环不同位置用³H标记的雌二醇和2-羟基雌二醇与雄性大鼠肝微粒体一起孵育,通过³H向³H₂O的转移来追踪它们的氧化转化。使用¹⁴C标记的雌激素或儿茶酚雌激素来确定与微粒体蛋白共价结合的部分。2-羟基雌二醇的进一步代谢涉及在微粒体系统中,细胞色素P-450介导的反应在C-4位以及在较小程度上在C-1位激活类固醇,NADPH、精胺、SKF-525A和CO在微粒体系统中的作用表明了这一点。谷胱甘肽促进了雌二醇或2-羟基雌二醇C-4位³H的丢失,但对C-1位的此反应影响较小,而在C-6,7位抑制了该反应。它还消除了¹⁴C标记的雌二醇和2-羟基雌二醇与微粒体蛋白的不可逆结合。NADPH是谷胱甘肽发挥其对³H向³H₂O转移以及大鼠肝微粒体将儿茶酚雌激素形成水溶性产物作用所必需的。它不能被NADP、NAD或NADH替代。抗坏血酸抑制这些酶促反应,但对雌二醇最初的2-羟基化没有显著影响。还提供了2-羟基雌二醇在C-6(或C-7)位进一步羟基化的证据。这些结果表明细胞色素P-450通过电子提取过程激活儿茶酚雌激素。