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调节人类FMO3转录的机制。

Mechanisms regulating human FMO3 transcription.

作者信息

Klick David E, Hines Ronald N

机构信息

Department of Pediatrics, and The Children's Research Institute, Medical College of Wisconsin, and Children's Hospital and Health System, Milwaukee, Wisconsin 53226, USA.

出版信息

Drug Metab Rev. 2007;39(2-3):419-42. doi: 10.1080/03602530701498612.

Abstract

Flavin-containing monooxygenases (FMOs) are important oxidative drug metabolizing enzymes. FMO3 is the primary human adult liver FMO enzyme, but is developmentally regulated. FMO3 promoter characterization using in vitro DNA binding assays with HepG2 cell and fetal and adult liver nuclear protein, as well as FMO3/reporter construct transient expression in HepG2 cells, provided evidence for specific mechanisms contributing to both developmental and constitutive adult regulation. NFY, USF1, an unidentified GC box binding protein, and YY1 appear to play major roles regulating constitutive FMO3 transcription, while Pbx(2) as a heterodimer with an unidentified Hox isoform also may contribute to FMO3 developmental expression.

摘要

含黄素单加氧酶(FMOs)是重要的氧化药物代谢酶。FMO3是人类成年肝脏中的主要FMO酶,但受发育调控。通过使用HepG2细胞、胎儿和成年肝脏核蛋白进行体外DNA结合试验对FMO3启动子进行表征,以及在HepG2细胞中进行FMO3/报告基因构建体瞬时表达,为发育和成年期组成性调节的特定机制提供了证据。核转录因子Y(NFY)、上游刺激因子1(USF1)、一种未鉴定的GC盒结合蛋白和YY1似乎在调节FMO3组成性转录中起主要作用,而Pbx(2)与一种未鉴定的Hox亚型形成异二聚体也可能有助于FMO3的发育表达。

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