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转录因子AP-2在调控人胰岛素样生长因子II基因主要胎儿启动子P3中的双重作用。

Dual role for transcription factor AP-2 in the regulation of the major fetal promoter P3 of the gene for human insulin-like growth factor II.

作者信息

Rietveld L E, Koonen-Reemst A M, Sussenbach J S, Holthuizen P E

机构信息

Laboratory for Physiological Chemistry, Graduate School of Developmental Biology, Utrecht University, Stratenum, Universiteitsweg 100, 3584 CG Utrecht, The Netherlands.

出版信息

Biochem J. 1999 Mar 15;338 ( Pt 3)(Pt 3):799-806.

Abstract

The human insulin-like growth factor II (IGF-II) gene contains four promoters that are differentially active during cell growth and development. Promoter 3 (P3) is the most active promoter in fetal and non-hepatic adult tissues. In addition to its expression during development, P3 is also the major promoter in many tumour tissues and IGF-II-expressing cell lines. Here we show that AP-2 has a dual function in P3 regulation in vivo as well as in vitro. In cells expressing low levels of endogenous AP-2, AP-2 overexpression activates P3, whereas P3 promoter activity is inhibited in cells containing abundant AP-2. Four potential AP-2-binding sites were identified in footprinting studies with recombinant AP-2. One of these AP-2-binding sites is located within the previously identified element P3-4 that contains two adjacent binding sites for IGF-II promoter-binding proteins IPBP3 and IPBP4/5. By applying binding competition assays and mutational analysis it is shown that AP-2 interferes with IPBP3 binding and transactivation in vivo as well as in vitro. Furthermore, AP-2 can bind additional elements in the proximal P3 promoter that also contribute to AP-2-mediated transactivation as shown by transient transfection assays. From these results we conclude that AP-2 is an important regulator in vivo and in vitro of IGF-II P3 activity.

摘要

人类胰岛素样生长因子II(IGF-II)基因包含四个启动子,它们在细胞生长和发育过程中具有不同的活性。启动子3(P3)是胎儿和非肝脏成年组织中最活跃的启动子。除了在发育过程中的表达外,P3还是许多肿瘤组织和表达IGF-II的细胞系中的主要启动子。在此我们表明,AP-2在体内和体外对P3的调控中具有双重功能。在表达低水平内源性AP-2的细胞中,AP-2过表达激活P3,而在含有丰富AP-2的细胞中,P3启动子活性受到抑制。在与重组AP-2进行的足迹分析研究中,鉴定出四个潜在的AP-2结合位点。其中一个AP-2结合位点位于先前鉴定的元件P3-4内,该元件包含两个相邻的IGF-II启动子结合蛋白IPBP3和IPBP4/5的结合位点。通过应用结合竞争试验和突变分析表明,AP-2在体内和体外都会干扰IPBP3的结合和反式激活。此外,如瞬时转染试验所示,AP-2可以结合近端P3启动子中的其他元件,这些元件也有助于AP-2介导的反式激活。从这些结果我们得出结论,AP-2在体内和体外都是IGF-II P3活性的重要调节因子。

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