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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Identification of Tazarotenic Acid as the First Xenobiotic Substrate of Human Retinoic Acid Hydroxylase CYP26A1 and CYP26B1
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Identification of Tazarotenic Acid as the First Xenobiotic Substrate of Human Retinoic Acid Hydroxylase CYP26A1 and CYP26B1

机译:他扎罗汀酸是人类维甲酸羟化酶CYP26A1和CYP26B1的第一个异种生物底物的鉴定

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摘要

Cytochrome P450 (CYP) 26A1 and 26B1 are heme-containing enzymes responsible for metabolizing all-trans retinoic acid (at-RA). No crystal structures have been solved, and therefore homology models that provide structural information are extremely valuable for the development of inhibitors of cytochrome P450 family 26 (CYP26). The objectives of this study were to use homology models of CYP26A1 and CYP26B1 to characterize substrate binding characteristics, to compare structural aspects of their active sites, and to support the role of CYP26 in the metabolism of xenobiotics. Each model was verified by docking at-RA in the active site and comparing the results to known metabolic profiles of at-RA. The models were then used to predict the metabolic sites of tazarotenic acid with results verified by in vitro metabolite identification experiments. The CYP26A1 and CYP26B1 homology models predicted that the benzothiopyranyl moiety of tazarotenic acid would be oriented toward the heme of each enzyme and suggested that tazarotenic acid would be a substrate of CYP26A1 and CYP26B1. Metabolite identification experiments indicated that CYP26A1 and CYP26B1 oxidativelymetabolized tazarotenic acid on the predicted moiety, with in vitro rates of metabolite formation by CYP26A1 and CYP26B1 being the highest across a panel of enzymes. Molecular analysis of the active sites estimated the active-site volumes of CYP26A1 and CYP26B1 to be 918 angstrom(3) and 977 angstrom(3), respectively. Overall, the homology models presented herein describe the enzyme characteristics leading to the metabolism of tazarotenic acid by CYP26A1 and CYP26B1 and support a potential role for the CYP26 enzymes in the metabolism of xenobiotics.
机译:细胞色素P450(CYP)26A1和26B1是负责代谢全反式视黄酸(at-RA)的含血红素的酶。尚未解决晶体结构,因此提供结构信息的同源模型对于细胞色素P450家族26(CYP26)抑制剂的开发非常有价值。本研究的目的是使用CYP26A1和CYP26B1的同源性模型表征底物结合特征,比较其活性位点的结构方面,并支持CYP26在异源生物代谢中的作用。通过将at-RA停靠在活动位点并将结果与​​at-RA的已知代谢谱进行比较来验证每个模型。然后将模型用于预测他扎罗汀酸的代谢部位,并通过体外代谢物鉴定实验验证了结果。 CYP26A1和CYP26B1同源模型预测,他扎罗汀酸的苯并硫吡喃基部分将朝向每种酶的血红素,并暗示他扎罗汀酸将是CYP26A1和CYP26B1的底物。代谢物鉴定实验表明,CYP26A1和CYP26B1在预测的部分上被氧化代谢的他扎罗汀酸,其中CYP26A1和CYP26B1的体外代谢产物形成速率在所有酶中最高。对活性部位的分子分析估计CYP26A1和CYP26B1的活性部位体积分别为918埃(3)和977埃(3)。总体而言,本文介绍的同源性模型描述了导致CYP26A1和CYP26B1代谢他扎罗汀酸的酶特征,并支持CYP26酶在异生物素代谢中的潜在作用。

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