Legraverend C, Antonson P, Flodby P, Xanthopoulos K G
Department of Medical Nutrition, Karolinska Institute, Novum, Huddinge, Sweden.
Nucleic Acids Res. 1993 Apr 25;21(8):1735-42. doi: 10.1093/nar/21.8.1735.
The promoter region of the mouse CCAAT-Enhancer Binding Protein (C/EBP alpha) gene is capable of directing high levels of expression of reporter constructs in various cell lines, albeit even in cells that do not express their endogenous C/EBP alpha gene. To understand the molecular mechanisms underlying this ubiquitous expression, we have characterized the promoter region of the mouse C/EBP alpha gene by a variety of in vitro and in vivo methods. We show that three sites related in sequence to USF, BTE and C/EBP binding sites and present in promoter region -350/+3, are recognized by proteins from rat liver nuclear extracts. The sequence of the C/EBP alpha promoter that includes the USF binding site is also capable of forming stable complexes with purified Myc+Max heterodimers and mutation of this site drastically reduces transcription of C/EBP alpha promoter luciferase constructs both in liver and non liver cell lines. In addition, we identify three novel protein-binding sites two of which display similarity to NF-1 and a NF kappa B binding sites. The region located between nucleotides -197 and -178 forms several heat-stable complexes with liver nuclear proteins in vitro which are recognized mainly by antibodies specific for C/EBP alpha. Furthermore, transient expression of C/EBP alpha and to a lesser extent C/EBP beta expression vectors, results in transactivation of a cotransfected C/EBP alpha promoter-luciferase reporter construct. These experiments support the notion that the C/EBP alpha gene is regulated by C/EBP alpha but other C/EBP-related proteins may also be involved.
小鼠CCAAT增强子结合蛋白(C/EBPα)基因的启动子区域能够在各种细胞系中指导报告基因构建体的高水平表达,即使在不表达其内源性C/EBPα基因的细胞中也是如此。为了了解这种普遍表达背后的分子机制,我们通过多种体外和体内方法对小鼠C/EBPα基因的启动子区域进行了表征。我们发现启动子区域-350/+3中与USF、BTE和C/EBP结合位点序列相关的三个位点能被大鼠肝核提取物中的蛋白质识别。包含USF结合位点的C/EBPα启动子序列也能够与纯化的Myc+Max异二聚体形成稳定的复合物,并且该位点的突变会大幅降低C/EBPα启动子荧光素酶构建体在肝和非肝细胞系中的转录。此外,我们鉴定出三个新的蛋白质结合位点,其中两个与NF-1相似,还有一个NFκB结合位点。位于核苷酸-197和-178之间的区域在体外与肝核蛋白形成几种热稳定复合物,这些复合物主要被C/EBPα特异性抗体识别。此外,C/EBPα的瞬时表达以及程度较轻的C/EBPβ表达载体的表达,会导致共转染的C/EBPα启动子-荧光素酶报告基因构建体的反式激活。这些实验支持了C/EBPα基因受C/EBPα调控,但其他C/EBP相关蛋白可能也参与其中的观点。