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人类细胞色素P-450将视黄醛代谢为视黄酸。

Human cytochrome P-450 metabolism of retinals to retinoic acids.

作者信息

Zhang Q Y, Dunbar D, Kaminsky L

机构信息

Wadsworth Center, New York State Department of Health, Albany, New York 12201-0509, USA.

出版信息

Drug Metab Dispos. 2000 Mar;28(3):292-7.

Abstract

Retinoic acids have important pleiotropic biological effects and thus the potential for human cytochrome P-450s (CYPs) to mediate retinoic acid synthesis was investigated. We examined the retinoic acid synthetic activity of human cDNA-expressed CYP1A1, 1A2, 1B1, 2A6, 2B6, 2C8, 2C9, 2C19, 2D6, 2E1, 3A4, 3A4+ cytochrome b(5) (b(5)), 3A5, and 4A11, expressed individually in insect cells together with NADPH-P-450 reductase. Only CYP1A1, 1A2, 1B1, and 3A4+b(5) converted all-trans-retinal (20 microM) to all-trans-retinoic acid with turnover numbers of 0.53, 0.18, 0.20, and 0.41 nmol/min/nmol P-450, respectively. With 9-cis-retinal as substrate, CYP1A2 exhibited a turnover number of 1.58 nmol/min/nmol P-450 whereas CYP1A1, 2C19, and 3A4+b(5) had turnover numbers of 0.40, 0.27, and 0.41 nmol/min/nmol P-450, respectively. For CYP3A4 activities with both retinals, b(5) was required. Kinetic analyses revealed that CYP1A1, 1A2, and 3A4+b(5) with all-trans-retinal had apparent K(m) values of 55, 356, and 255 microM, and V(max) values of 2.0, 8.3, and 6.3 nmol/min/nmol P-450, respectively, and with 9-cis-retinal had K(m) values of 77, 91, and 368 microM, and V(max) values of 2.7, 9.7, and 7.6 nmol/min/nmol P-450, respectively. The 9-cis retinoic acid synthetic activity of a group of 12 human liver microsomes correlated only with the CYP1A2 activity (r = 0.96), implicating CYP1A2 in human liver microsomal metabolism of 9-cis- retinal to 9-cis-retinoic acid. These studies have indicated that human CYPs are capable of catalyzing retinal to retinoic acid metabolism, but the physiological relevance of this metabolism is still unclear.

摘要

维甲酸具有重要的多效性生物学效应,因此研究了人类细胞色素P-450(CYP)介导维甲酸合成的可能性。我们检测了在昆虫细胞中单独表达的人源cDNA CYP1A1、1A2、1B1、2A6、2B6、2C8、2C9、2C19、2D6、2E1、3A4、3A4 + 细胞色素b5(b5)、3A5和4A11与NADPH-P-450还原酶共同作用时的维甲酸合成活性。只有CYP1A1、1A2、1B1和3A4 + b5能将全反式视黄醛(20 μM)转化为全反式维甲酸,转换数分别为0.53、0.18、0.20和0.41 nmol/分钟/nmol P-450。以9-顺式视黄醛为底物时,CYP1A2的转换数为1.58 nmol/分钟/nmol P-450,而CYP1A1、2C19和3A4 + b5的转换数分别为0.40、0.27和0.41 nmol/分钟/nmol P-450。对于CYP3A4催化两种视黄醛的活性,需要b5。动力学分析表明,CYP1A1、1A2和3A4 + b5催化全反式视黄醛时的表观K(m)值分别为55、356和255 μM,V(max)值分别为2.0、8.3和6.3 nmol/分钟/nmol P-450,催化9-顺式视黄醛时的K(m)值分别为77、91和368 μM,V(max)值分别为2.7、9.7和7.6 nmol/分钟/nmol P-450。一组12个人肝微粒体的9-顺式维甲酸合成活性仅与CYP1A2活性相关(r = 0.96),表明CYP1A2参与人肝微粒体将9-顺式视黄醛代谢为9-顺式维甲酸的过程。这些研究表明,人类CYP能够催化视黄醛向维甲酸的代谢,但这种代谢的生理相关性仍不清楚。

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