Schippers I J, Kloppenburg M, van Waardenburg R, Ab G
Department of Biochemistry, University of Groningen, The Netherlands.
Eur J Biochem. 1994 Apr 1;221(1):43-51. doi: 10.1111/j.1432-1033.1994.tb18713.x.
The gene coding for chicken very low density apolipoprotein II (apoVLDLII) is expressed exclusively in liver in response to estrogen. Previous work in our laboratory identified several protein binding sites, identified by the letters A to F, and their cognate factors within the first 300 bp flanking the gene. Here we present an extensive functional analysis of the apoVLDLII promoter by gene transfer experiments using a chicken hepatoma cell line and cultured non-hepatic cells. Deletion analysis revealed that the -301 to -163-bp promoter region, comprising elements E1, E2 and F, is sufficient for strong estrogen-dependent expression. Mutation analysis demonstrated that efficient transcription requires the interplay of the major estrogen response element E1 with several other cis-acting elements. Analysis of individual protein binding sites showed that element E1 is sufficient by itself to confer weak estrogen-induced transcription from the apoVLDLII promoter, and that additional promoter elements are required for full estrogen-responsiveness. Elements F and B1 were capable of strongly potentiating the activity of element E1. In general, the activity of certain cis-acting elements appeared to be strongly promoter-context dependent. Cultured non-liver cells expressed transfected VLDL-CAT reporter plasmids in the presence of cotransfected estrogen receptor expression vector in a hormone-dependent way, indicating that for the control of tissue specificity the 5'-proximal promoter region is not sufficient.
编码鸡极低密度载脂蛋白II(apoVLDLII)的基因仅在肝脏中响应雌激素而表达。我们实验室之前的工作在该基因侧翼的前300 bp内鉴定了几个蛋白质结合位点,用字母A到F表示,以及它们的同源因子。在此,我们通过使用鸡肝癌细胞系和培养的非肝细胞进行基因转移实验,对apoVLDLII启动子进行了广泛的功能分析。缺失分析表明,包含元件E1、E2和F的 -301至-163 bp启动子区域足以实现强烈的雌激素依赖性表达。突变分析表明,有效的转录需要主要雌激素反应元件E1与其他几个顺式作用元件的相互作用。对单个蛋白质结合位点的分析表明,元件E1本身足以赋予apoVLDLII启动子微弱的雌激素诱导转录,而完整的雌激素反应性还需要其他启动子元件。元件F和B1能够强烈增强元件E1的活性。一般来说,某些顺式作用元件的活性似乎强烈依赖于启动子背景。在共转染雌激素受体表达载体的情况下,培养的非肝细胞以激素依赖性方式表达转染的VLDL-CAT报告质粒,这表明对于组织特异性的控制,5'近端启动子区域是不够的。