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人类鸟氨酸氨基转移酶启动子的转录分析

Transcriptional analysis of the human ornithine aminotransferase promoter.

作者信息

Engelhardt J F, Steel G, Valle D

机构信息

Howard Hughes Medical Institute, Department of Pediatrics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

J Biol Chem. 1991 Jan 15;266(2):752-8.

PMID:1845993
Abstract

The regulation of ornithine delta-aminotransferase (OAT) expression is poorly characterized in humans, but in rat there are tissue-specific responses to nutritional and hormonal stimuli. We analyzed 1.3 kilobases of 5'-flanking sequence and part of intron 1 of the human OAT gene and found several candidate regulatory sequences including four copies of a motif also present in the promoters of three other urea cycle-related enzymes (urea cycle element). We transfected a series of promoter deletion constructs into HepG2 (human hepatoma), H4 (rat hepatoma), and HEK (human embryonic kidney) cells and obtained maximal expression with 134 base pairs (bp) of 5'-flanking DNA. One of the urea cycle elements and the 3' end of exon 1 had positive effects on expression in all cell lines. However, mutations in a 22-bp element which overlaps the transcriptional start site decreased activity 4-fold in H4 cells only. cAMP increased endogenous OAT mRNA 4-fold in HepG2 cells and the expression of constructs containing as little as -85 bp of 5'-flanking DNA 2- 5-fold in HepG2 and H4 cells. DNase I protection analysis of the first 134 bp of 5'-flanking sequence with nuclear extracts from rat liver, rat kidney, HEK, and HepG2 cells showed two patterns of protection over one of the urea cycle elements. These studies provide the foundation for the understanding of tissue-specific regulation of OAT.

摘要

鸟氨酸δ-氨基转移酶(OAT)表达的调控在人类中了解甚少,但在大鼠中存在对营养和激素刺激的组织特异性反应。我们分析了人类OAT基因5'侧翼序列的1.3千碱基以及内含子1的部分序列,发现了几个候选调控序列,包括一个基序的四个拷贝,该基序也存在于其他三种尿素循环相关酶的启动子中(尿素循环元件)。我们将一系列启动子缺失构建体转染到HepG2(人肝癌细胞)、H4(大鼠肝癌细胞)和HEK(人胚肾细胞)中,发现5'侧翼DNA的134个碱基对(bp)可获得最大表达。其中一个尿素循环元件和外显子1的3'末端对所有细胞系中的表达都有正向作用。然而,一个与转录起始位点重叠的22-bp元件中的突变仅使H4细胞中的活性降低了4倍。cAMP使HepG2细胞中的内源性OAT mRNA增加了4倍,并使含有仅-85 bp 5'侧翼DNA的构建体在HepG2和H4细胞中的表达增加了2至5倍。用大鼠肝脏、大鼠肾脏、HEK和HepG2细胞的核提取物对5'侧翼序列的前134 bp进行DNase I保护分析,结果显示在其中一个尿素循环元件上有两种保护模式。这些研究为理解OAT的组织特异性调控奠定了基础。

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