Department of Nutritional Sciences, The Pennsylvania State University, University Park, PA 16802, USA.
J Lipid Res. 2010 Jul;51(7):1781-92. doi: 10.1194/jlr.M002840. Epub 2010 Feb 10.
Several cytochrome P450 (CYP) enzymes catalyze the C4-hydroxylation of retinoic acid (RA), a potent inducer of cell differentiation and an agent in the treatment of several diseases. Here, we have characterized CYP2C22, a member of the rat CYP2C family with homology to human CYP2C8 and CYP2C9. CYP2C22 was expressed nearly exclusively in hepatocytes, where it was one of the more abundant mRNAs transcripts. In H-4-II-E rat hepatoma cells, CYP2C22 mRNA was upregulated by all-trans (at)-RA, and Am580, a nonmetabolizable analog of at-RA. In comparison, in primary human hepatocytes, at-RA increased CYP2C9 but not CYP2C8 mRNA. Analysis of the CYP2C22 promoter region revealed a RA response element (5'-GGTTCA-(n)5-AGGTCA-3') in the distal flanking region, which bound the nuclear hormone receptors RAR and RXR and which was required for transcriptional activation response of this promoter to RA in CYP2C22-luciferase-transfected RA-treated HepG2 cells. The cDNA-expressed CYP2C22 protein metabolized [3H]at-RA to more polar metabolites. While long-chain polyunsaturated fatty acids competed, 9-cis-RA was a stronger competitor. Our studies demonstrate that CYP2C22 is a high-abundance, retinoid-inducible, hepatic P450 with the potential to metabolize at-RA, providing additional insight into the role of the CYP2C gene family in retinoid homeostasis.
几种细胞色素 P450(CYP)酶催化视黄酸(RA)的 C4-羟化,RA 是一种有效的细胞分化诱导剂,也是治疗多种疾病的药物。本文对大鼠 CYP2C 家族的一个成员 CYP2C22 进行了研究,该基因与人类 CYP2C8 和 CYP2C9 具有同源性。CYP2C22 主要在肝细胞中表达,在这些细胞中,它是丰度较高的 mRNA 转录本之一。在 H-4-II-E 大鼠肝癌细胞中,全反式(at)-RA 和非代谢型 at-RA 类似物 Am580 可诱导 CYP2C22 mRNA 的上调。相比之下,在原代人肝细胞中,at-RA 增加了 CYP2C9 的 mRNA,但不增加 CYP2C8 的 mRNA。对 CYP2C22 启动子区的分析表明,在远端侧翼区存在一个 RA 反应元件(5'-GGTTCA-(n)5-AGGTCA-3'),该元件与核激素受体 RAR 和 RXR 结合,并在 RA 处理的 HepG2 细胞中,该元件对于 CYP2C22-荧光素酶转录本的启动子的 RA 转录激活反应是必需的。通过 cDNA 表达的 CYP2C22 蛋白可代谢 [3H]at-RA 生成更多极性的代谢产物。虽然长链多不饱和脂肪酸具有竞争性,但 9-顺式-RA 的竞争性更强。我们的研究表明,CYP2C22 是一种高丰度、可诱导的、肝 P450,具有代谢 at-RA 的潜力,为 CYP2C 基因家族在视黄酸稳态中的作用提供了更多的认识。