Martini R, Butler A M, Jiang X M, Murray M
Department of Medicine, University of Sydney, Westmead Hospital, NSW, Australia.
J Pharmacol Exp Ther. 1995 Apr;273(1):427-34.
Manipulation of vitamin A intake has been associated with altered rates of cytochrome P450 (P450)-mediated microsomal drug oxidation. Dietary vitamin A deficiency reportedly results in decreased rates of P450-dependent substrate oxidation, but the mechanisms underlying these changes remain unclear. In this study, the effects of dietary vitamin A modulation, as well as dietary inclusion of all-trans-retinoic acid (ATRA), on major constitutive P450s were defined. Total microsomal P450 in deficient male rats was decreased to 72% of control (0.63 +/- 0.07 vs. 0.88 +/- 0.08 nmol/mg of protein; P < .05); this was prevented by inclusion of ATRA (12 micrograms/g) in the deficient diet. Dietary vitamin A deficiency decreased rates of P450 2C11-mediated testosterone 2 alpha- and 16 alpha-hydroxylation in rat liver to 44 and 47% of respective adequate control, whereas rates of 6 beta- and 7 alpha-hydroxylation of the steroid were unaltered; inclusion of ATRA into the deficient diet prevented the loss of 2C11 activities. Immunoblot and RNA analysis revealed decreases in P450 2C11 apoprotein and its corresponding mRNA in liver from deficient rats that was prevented by inclusion of ATRA in the deficient diet. Serum testosterone concentrations were reduced in deficient rats and this also was prevented by dietary ATRA. To discern whether this was a direct effect of vitamin A on P450 2C11 regulation, further experiments evaluated the effect of ATRA administration to male rats maintained on standard rat chow (vitamin A-adequate). Dose- and time-dependent decreases in P450 2C11 activity were observed.(ABSTRACT TRUNCATED AT 250 WORDS)
维生素A摄入量的改变与细胞色素P450(P450)介导的微粒体药物氧化速率的变化有关。据报道,饮食中维生素A缺乏会导致P450依赖性底物氧化速率降低,但这些变化背后的机制仍不清楚。在本研究中,确定了饮食中维生素A调节以及全反式维甲酸(ATRA)的饮食添加对主要组成型P450的影响。缺乏维生素A的雄性大鼠的总微粒体P450降至对照组的72%(0.63±0.07对0.88±0.08 nmol/mg蛋白质;P<0.05);在缺乏维生素A的饮食中添加ATRA(12微克/克)可防止这种情况发生。饮食中维生素A缺乏使大鼠肝脏中P450 2C11介导的睾酮2α-和16α-羟化速率分别降至充足对照组的44%和47%,而该类固醇的6β-和7α-羟化速率未改变;在缺乏维生素A的饮食中添加ATRA可防止2C11活性的丧失。免疫印迹和RNA分析显示,缺乏维生素A的大鼠肝脏中P450 2C11载脂蛋白及其相应mRNA减少,在缺乏维生素A的饮食中添加ATRA可防止这种情况发生。缺乏维生素A的大鼠血清睾酮浓度降低,饮食中添加ATRA也可防止这种情况发生。为了确定这是否是维生素A对P450 2C11调节的直接作用,进一步的实验评估了向维持在标准大鼠饲料(维生素A充足)上的雄性大鼠施用ATRA的效果。观察到P450 2C11活性呈剂量和时间依赖性下降。(摘要截短于250字)