Li X X, Huang J H, Rienhoff H Y, Liao W S
Department of Biochemistry and Molecular Biology, University of Texas M.D. Anderson Cancer Center, Houston 77030.
Mol Cell Biol. 1990 Dec;10(12):6624-31. doi: 10.1128/mcb.10.12.6624-6631.1990.
Serum amyloid A (SAA) is a major acute-phase protein synthesized primarily in the liver. Its expression, very low in normal animals, is increased several hundredfold following acute inflammation. To examine DNA sequences involved in liver-specific expression, 5'-flanking regions of the mouse SAA3 gene were analyzed by transient transfection, band shift, and DNase I protection assays. We found that a 56-bp fragment immediately 5' to the TATA box spanning the region -93 to -38 relative to the transcription start site was sufficient to confer liver cell-specific transcriptional activation onto a heterologous promoter in a dose-dependent and orientation-independent manner. This DNA fragment could form DNA-protein complexes with heat-stable nuclear proteins, and the complexes formed could be specifically competed for by excess oligomers corresponding to the C/EBP- or DBP-binding sites but not by binding sites for three other liver-specific factors, HNF1, HNF3, and HNF4. Footprint analysis using Hep3B nuclear extracts revealed two adjacent footprint regions within this 56-bp fragment, the distal region having at least fivefold-greater affinity than the proximal region. Identical footprint patterns were observed when purified recombinant C/EBP protein was used. These results indicated that binding of C/EBP to this 56-bp fragment plays an important role in vivo in enhancing expression of the mouse SAA3 gene in hepatocytes.
血清淀粉样蛋白A(SAA)是一种主要在肝脏中合成的主要急性期蛋白。其表达在正常动物中非常低,在急性炎症后会增加数百倍。为了研究参与肝脏特异性表达的DNA序列,通过瞬时转染、凝胶迁移和DNase I保护试验分析了小鼠SAA3基因的5'侧翼区域。我们发现,相对于转录起始位点,位于TATA框上游5'的一个56 bp片段,跨越 -93至 -38区域,足以以剂量依赖性和方向独立性的方式赋予异源启动子肝细胞特异性转录激活。该DNA片段可与热稳定核蛋白形成DNA-蛋白质复合物,形成的复合物可被对应于C/EBP或DBP结合位点的过量寡聚体特异性竞争,但不能被其他三种肝脏特异性因子HNF1、HNF3和HNF4的结合位点竞争。使用Hep3B核提取物进行的足迹分析揭示了该56 bp片段内的两个相邻足迹区域,远端区域的亲和力比近端区域至少高五倍。当使用纯化的重组C/EBP蛋白时,观察到相同的足迹模式。这些结果表明,C/EBP与该56 bp片段的结合在体内对增强小鼠SAA3基因在肝细胞中的表达起重要作用。