White J A, Beckett-Jones B, Guo Y D, Dilworth F J, Bonasoro J, Jones G, Petkovich M
Cancer Research Laboratories, Queen's University, Kingston, Ontario, Canada K7L 3N6.
J Biol Chem. 1997 Jul 25;272(30):18538-41. doi: 10.1074/jbc.272.30.18538.
Retinoids, including all-trans-retinoic acid (RA) and its stereoisomer 9-cis-RA play important roles in regulating gene expression, through interactions with nuclear receptors, during embryonic development and in the maintenance of adult epithelial tissues (Chambon, P. (1995) Rec. Prog. Horm. Res. 50, 317-32; Mangelsdorf, D. J., and Evans, R. M. (1995) Cell 83, 841-850; Petkovich, M. (1992) Annu. Rev. Nutr. 12, 443-471). Evidence suggests that 4-hydroxylation of RA inside the target cell limits its biological activity and initiates a degradative process of RA leading to its eventual elimination. However, 18-hydroxylation and glucuronidation may also be important steps in this process. In this paper, we describe the cloning and characterization of the first mammalian retinoic acid-inducible retinoic acid-metabolizing cytochrome P450 (hP450RAI), which belongs to a novel class of cytochromes (CYP26). We demonstrate that hP450RAI is responsible for generation of several hydroxylated forms of RA, including 4-OH-RA, 4-oxo-RA, and 18-OH-RA. We also show that hP450RAI mRNA expression is highly induced by RA in certain human tumor cell lines and further show that RA-inducible RA metabolism may correlate with P450RAI expression. We conclude that this enzyme plays a key role in RA metabolism, functioning in a feedback loop where RA levels are controlled in an autoregulatory manner.
维甲酸,包括全反式维甲酸(RA)及其立体异构体9-顺式维甲酸,在胚胎发育过程中以及成体上皮组织的维持过程中,通过与核受体相互作用,在调节基因表达方面发挥着重要作用(尚邦,P.(1995年)《激素研究进展》50卷,317 - 32页;曼格斯多夫,D.J.,和埃文斯,R.M.(1995年)《细胞》83卷,841 - 850页;佩特科维奇,M.(1992年)《营养学年评》12卷,443 - 471页)。有证据表明,靶细胞内RA的4-羟基化作用会限制其生物活性,并启动RA的降解过程,最终导致其被清除。然而,18-羟基化作用和葡萄糖醛酸化作用在这个过程中可能同样重要。在本文中,我们描述了首个哺乳动物维甲酸诱导型维甲酸代谢细胞色素P450(hP450RAI)的克隆和特性,它属于细胞色素的一个新类别(CYP26)。我们证明hP450RAI负责生成多种RA的羟基化形式,包括4-OH-RA、4-氧代-RA和18-OH-RA。我们还表明,hP450RAI mRNA表达在某些人类肿瘤细胞系中受到RA的高度诱导,并且进一步表明RA诱导的RA代谢可能与P450RAI表达相关。我们得出结论,这种酶在RA代谢中起关键作用,在一个反馈回路中发挥作用,通过自动调节的方式控制RA水平。