Laboratory of Environmental and Health Sciences, Faculty of Pharmaceutical Sciences, Tohoku Medical and Pharmaceutical University.
J Toxicol Sci. 2022;47(6):249-255. doi: 10.2131/jts.47.249.
Retinoic acid, an active form of vitamin A, plays very important roles in mammalian embryogenesis. The concentration of retinoic acid is extremely low and strictly regulated by enzymes of cytochrome P450 (CYP) family, CYP26s (CYP26A1, CYP26B1 and CYP26C1) in the cells. Therefore, it is thought that changes in CYP26s activities due to exposure to a wide variety of drugs and chemicals exhibit teratogenicity. In this study, to easily detect the changes in retinoic acid level, we constructed an adenovirus-mediated reporter assay system using the promoter region of the CYP26A1 gene and inserting retinoic acid response element (RARE) and retinoid X response element (RXRE) into the downstream of the luciferase gene of reporter plasmid, which highly increased the response to retinoic acid. Reporter activity significantly increased in a concentration-dependent manner with retinoic acid; this increase was also observed at least after treatment with a very low concentration of 1 nM retinoic acid. This increase was suppressed by the accelerated metabolism of retinoic acid due to the overexpression of CYP26A1; however, this suppression was almost completely suspended by treatment with talarozole, a CYP26 inhibitor. In conclusion, the reporter assay system constructed using the induction of CYP26A1 expression is a risk assessment system that responds to extremely low concentrations of retinoic acid and is useful for assessing the excess vitamin A mediated teratogenicity caused by various chemicals at the cellular level.
视黄酸是维生素 A 的一种活性形式,在哺乳动物胚胎发生中起着非常重要的作用。视黄酸的浓度非常低,并且受到细胞中环氧化物 P450(CYP)家族酶、CYP26s(CYP26A1、CYP26B1 和 CYP26C1)的严格调节。因此,人们认为由于暴露于各种药物和化学物质而导致的 CYP26s 活性的变化表现出致畸性。在这项研究中,为了方便检测视黄酸水平的变化,我们构建了一个基于腺病毒的报告基因检测系统,该系统使用 CYP26A1 基因的启动子区域,并且在报告质粒的荧光素酶基因下游插入视黄酸反应元件(RARE)和维甲酸 X 反应元件(RXRE),这极大地提高了对视黄酸的反应。报告基因活性随视黄酸浓度呈浓度依赖性显著增加;即使在用非常低浓度 1 nM 视黄酸处理后,也观察到这种增加。这种增加由于 CYP26A1 的过度表达而导致视黄酸代谢加速而被抑制;然而,用 CYP26 抑制剂他拉唑唑处理几乎完全阻止了这种抑制。总之,使用 CYP26A1 表达诱导构建的报告基因检测系统是一种风险评估系统,可响应极低浓度的视黄酸,并且可用于在细胞水平上评估各种化学物质引起的过量维生素 A 介导的致畸性。