Murao K, Bassyouni H, Taylor A H, Wanke I E, Wong N C
Department of Medicine, Faculty of Medicine, University of Calgary, Alberta, Canada.
Biochemistry. 1997 Jan 14;36(2):301-6. doi: 10.1021/bi9613943.
The pivotal role of apolipoprotein AI (Apo AI) in mediating reverse cholesterol transport has lead us to the study of transcription factors that influence the expression of this gene. Previous studies show that rat HNF-4 enhances the activity of a cis-acting site C in the rat Apo AI promoter. Since sites C and A share 80% homology, we have examined whether HNF-4 binds to and modulates the transcriptional activity of the A-motif. Results show that HNF-4 binds to site A. The transcriptional activity of site A in a human hepatoma cell line, HuH-7, increases 2-2.5-fold in the presence of antisense HNF-4, but the sense construct has no effect on the activity of the reporter template. The lack of an effect of HNF-4 on site A activity may be due to high endogenous levels of the factor in HuH-7 cells. However, in BHK cells HNF-4 clearly inhibits the transcriptional activity of site A. Together these findings suggest that in contrast to the enhancing effects of HNF-4 on site C, the same factor inhibits site A activity. Since hepatocytes normally contain the T3 receptor and this nuclear factor increases site A action, cotransfection of T3 receptor along with antisense HNF-4 further augments the activity of p5'A.CAT. In summary, rat HNF-4 binds to site A from rat Apo AI DNA, and this factor suppresses site A activity. HNF-4 interferes with the enhancer role of the T3 receptor and thus contributes negatively to the net expression of the Apo AI gene.
载脂蛋白AI(Apo AI)在介导胆固醇逆向转运中起关键作用,这促使我们研究影响该基因表达的转录因子。先前的研究表明,大鼠肝细胞核因子4(HNF-4)可增强大鼠Apo AI启动子中顺式作用位点C的活性。由于位点C和A具有80%的同源性,我们研究了HNF-4是否结合并调节A基序的转录活性。结果表明,HNF-4结合位点A。在人肝癌细胞系HuH-7中,反义HNF-4存在时,位点A的转录活性增加2至2.5倍,但正义构建体对报告模板的活性无影响。HNF-4对位点A活性缺乏影响可能是由于HuH-7细胞中该因子的内源性水平较高。然而,在幼仓鼠肾(BHK)细胞中,HNF-4明显抑制位点A的转录活性。这些发现共同表明,与HNF-4对位点C的增强作用相反,同一因子抑制位点A的活性。由于肝细胞通常含有甲状腺激素受体(T3受体),且该核因子可增加位点A的作用,因此将T3受体与反义HNF-4共转染可进一步增强p5'A.CAT的活性。总之,大鼠HNF-4与大鼠Apo AI DNA的位点A结合,该因子抑制位点A的活性。HNF-4干扰T3受体的增强子作用,从而对Apo AI基因的净表达产生负面影响。