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胰高血糖素启动子中一个新型Foxa(肝细胞核因子-3)位点的特征分析,该位点在啮齿动物和人类之间保守。

Characterization of a novel Foxa (hepatocyte nuclear factor-3) site in the glucagon promoter that is conserved between rodents and humans.

作者信息

Sharma Sanjeev K, Leinemann Ulrike, Ratke Regine, Oetjen Elke, Blume Roland, Dickel Corinna, Knepel Willhart

机构信息

Department of Molecular Pharmacology, University of Göttingen, D-37099 Göttingen, Germany.

出版信息

Biochem J. 2005 Aug 1;389(Pt 3):831-41. doi: 10.1042/BJ20050334.

Abstract

The pancreatic islet hormone glucagon stimulates hepatic glucose production and thus maintains blood glucose levels in the fasting state. Transcription factors of the Foxa [Fox (forkhead box) subclass A; also known as HNF-3 (hepatocyte nuclear factor-3)] family are required for cell-specific activation of the glucagon gene in pancreatic islet alpha-cells. However, their action on the glucagon gene is poorly understood. In the present study, comparative sequence analysis and molecular characterization using protein-DNA binding and transient transfection assays revealed that the well-characterized Foxa-binding site in the G2 enhancer element of the rat glucagon gene is not conserved in humans and that the human G2 sequence lacks basal enhancer activity. A novel Foxa site was identified that is conserved in rats, mice and humans. It mediates activation of the glucagon gene by Foxa proteins and confers cell-specific promoter activity in glucagon-producing pancreatic islet alpha-cell lines. In contrast with previously identified Foxa-binding sites in the glucagon promoter, which bind nuclear Foxa2, the novel Foxa site was found to bind preferentially Foxa1 in nuclear extracts of a glucagon-producing pancreatic islet alpha-cell line, offering a mechanism that explains the decrease in glucagon gene expression in Foxa1-deficient mice. This site is located just upstream of the TATA box (between -30 and -50), suggesting a role for Foxa proteins in addition to direct transcriptional activation, such as a role in opening the chromatin at the start site of transcription of the glucagon gene.

摘要

胰岛激素胰高血糖素可刺激肝脏葡萄糖生成,从而维持空腹状态下的血糖水平。Foxa(叉头框A亚类;也称为肝细胞核因子-3,即HNF-3)家族的转录因子是胰岛α细胞中胰高血糖素基因细胞特异性激活所必需的。然而,它们对胰高血糖素基因的作用尚不清楚。在本研究中,通过蛋白质-DNA结合和瞬时转染试验进行的比较序列分析和分子特征鉴定表明,大鼠胰高血糖素基因G2增强子元件中已得到充分表征的Foxa结合位点在人类中并不保守,并且人类G2序列缺乏基础增强子活性。鉴定出了一个在大鼠、小鼠和人类中均保守的新型Foxa位点。它介导Foxa蛋白对胰高血糖素基因的激活,并在产生胰高血糖素的胰岛α细胞系中赋予细胞特异性启动子活性。与胰高血糖素启动子中先前鉴定的结合核Foxa2的Foxa结合位点不同,在产生胰高血糖素的胰岛α细胞系的核提取物中,发现这个新型Foxa位点优先结合Foxa1,这提供了一种机制,解释了Foxa1缺陷小鼠中胰高血糖素基因表达下降的原因。该位点位于TATA框上游(-30至-50之间),这表明Foxa蛋白除了直接转录激活作用外,还具有其他作用,例如在胰高血糖素基因转录起始位点打开染色质方面发挥作用。

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