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大鼠肾上腺苯乙醇胺N-甲基转移酶基因的早期生长反应因子-1激活

Egr-1 activation of rat adrenal phenylethanolamine N-methyltransferase gene.

作者信息

Ebert S N, Balt S L, Hunter J P, Gashler A, Sukhatme V, Wong D L

机构信息

Department of Psychiatry and Behavioral Sciences, Nancy Pritzker Laboratory of Developmental and Molecular Neurobiology, Standford University School of Medicine, California 94305-5485.

出版信息

J Biol Chem. 1994 Aug 19;269(33):20885-98.

PMID:8063705
Abstract

The immediate early gene transcription factor Egr-1 increases luciferase reporter gene activity 3-4-fold when a rat phenylethanolamine N-methyltransferase (PNMT) promoter-luciferase construct and an Egr-1 expression construct are cotransfected into transformed PC12 cells (RS1). Egr-1 also stimulates endogenous PNMT mRNA expression in the RS1 cells. Furthermore, when transfected RS1 cells are treated with dexamethasone, both luciferase and endogenous PNMT mRNA rise an additional 2-fold although dexamethasone does not independently activate transcription from the PNMT promoter. While both Egr-1 sites (-45 and -165 base pairs) in the PNMT promoter appear necessary for maximum luciferase reporter gene expression, the -165 site appears to be the more important for mediating the Egr-1 response. When the upstream site is deleted or either or both sites are mutated in PNMT-reporter gene constructs, Egr-1-induced luciferase activity from the PNMT promoter is significantly reduced. In addition, the incremental activation by dexamethasone is lost when sequences containing the glucocorticoid response element are deleted or when the Egr-1 sites are mutated. In the transfected RS1 cells, a rise in nuclear Egr-1 protein accompanies the rise in endogenous PNMT mRNA. Similarly, reserpine-treated rats (10 mg/kg, intraperitoneally), which show an 8-fold elevation in adrenal PNMT mRNA at 6 h postdrug administration, also show a marked rise in Egr-1 protein in adrenal medullary cell nuclei. These studies provide the first direct evidence that a transcription factor, Egr-1, can activate PNMT gene expression and identify PNMT as a novel target gene for Egr-1. Finally, the incremental enhancement of the Egr-1 response by glucocorticoids suggests a potential interaction between Egr-1 and another transcription factor, the glucocorticoid receptor.

摘要

当大鼠苯乙醇胺N-甲基转移酶(PNMT)启动子-荧光素酶构建体和Egr-1表达构建体共转染到转化的PC12细胞(RS1)中时,即刻早期基因转录因子Egr-1可使荧光素酶报告基因活性增加3至4倍。Egr-1还能刺激RS1细胞中内源性PNMT mRNA的表达。此外,当用 dexamethasone处理转染的RS1细胞时,荧光素酶和内源性PNMT mRNA均额外增加2倍,尽管dexamethasone不能独立激活PNMT启动子的转录。虽然PNMT启动子中的两个Egr-1位点(-45和-165碱基对)对于最大程度的荧光素酶报告基因表达似乎都是必需的,但-165位点对于介导Egr-1反应似乎更为重要。当在PNMT报告基因构建体中删除上游位点或使其中一个或两个位点发生突变时,Egr-1诱导的PNMT启动子荧光素酶活性会显著降低。此外,当删除含有糖皮质激素反应元件的序列或Egr-1位点发生突变时,dexamethasone的增量激活作用就会丧失。在转染的RS1细胞中,核Egr-1蛋白的增加伴随着内源性PNMT mRNA的增加。同样,利血平处理的大鼠(10mg/kg,腹腔注射)在给药后6小时肾上腺PNMT mRNA升高8倍,肾上腺髓质细胞核中的Egr-1蛋白也显著增加。这些研究提供了首个直接证据,证明转录因子Egr-1可激活PNMT基因表达,并将PNMT鉴定为Egr-1的一个新靶基因。最后,糖皮质激素对Egr-1反应的增量增强表明Egr-1与另一个转录因子糖皮质激素受体之间存在潜在相互作用。

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