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To unravel the mechanisms that regulate the human secretin gene expression, in this study, we have used secretin-expressing (HuTu-80 cells, human duodenal adenocarcinoma) and non-secretin-expressing [PANC-1 (human pancreatic ductile carcinoma) and HepG2 (human hepatocellular carcinoma) cells] cell models for in vitro and in vivo analyses. By transient transfection assays, within the promoter region (-11 to -341 from ATG, relative to the ATG initiation codon), we have initially identified several functional motifs including an E-box and 2 GC-boxes. Results from gel mobility shift and chromatin immunoprecipitation assays confirmed further that NeuroD, E2A, Sp1, and Sp3 bind to these E- and GC-boxes in HuTu-80 cells in vitro and in vivo, whereas only high levels of Sp3 is observed to bind the promoter in HepG2 cells. In addition, overexpression of Sp3 resulted in a dose-dependent repression of the Sp1-mediated transactivation. Collectively, these data suggest that the Sp1/Sp3 ratio is instrumental to controlling secretin gene expression in secretin-producing and non-secretin-producing cells. The functions of GC-box and Sp proteins prompted us to investigate the possible involvement of DNA methylation in regulating this gene. Consistent with this idea, we found a putative CpG island (-336 to 262 from ATG) that overlaps with the human secretin gene promoter. By methylation-specific PCR, all the CpG dinucleo-tides (26 of them) within the CpG island in HuTu-80 cells are unmethylated, whereas all these sites are methylated in PANC-1 and HepG2 cells. The expressions of secretin in PANC-1 and HepG2 cells were subsequently found to be significantly activated by a demethylation agent, 5'-Aza-2' deoxycytidine. Taken together, our data indicate that the human secretin gene is controlled by the in vivo Sp1/Sp3 ratio and the methylation status of the promoter.  相似文献   

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Gene regulation by Sp1 and Sp3.   总被引:19,自引:0,他引:19  
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人成纤维细胞转录因子Sp1Sp3对p16~(INK4a)基因的调控   总被引:1,自引:0,他引:1  
p16 INK4a是一种细胞周期蛋白依赖激酶 (cdk)的抑制因子 ,它通过抑制cdk4与cdk6的活性 ,使视网膜母细胞瘤抑制蛋白Rb处于低磷酸化状态 ,从而使细胞阻滞于G1期 .对p16 INK4aATG上游 6 2 2bp片段进行序列分析发现 ,该区域富含GC ,其中有 5个GC盒 (分别命名为GC Ⅰ~GC Ⅴ ) .将上述片段插入到荧光素酶报告载体pGL3 Basic ,分别对 5个GC盒进行点突变后转染人胚肺二倍体成纤维细胞 (2BS)发现 ,Ⅰ、Ⅱ、Ⅳ位点的突变体显著下调p16 INK4a启动子的活性 ,而Ⅲ、Ⅴ位点突变体无明显作用 .电泳迁移率变动分析 (EMSA)证实 ,GC Ⅰ ,Ⅱ ,Ⅳ能与转录因子Sp1和Sp3结合 ,而且结合条带可被转录因子Sp1和Sp3的抗体所拮抗 .共转染Sp1有助于增加启动子的活性 ,而共转染Sp3则有较弱的抑制作用 ,证明p16 INK4a的转录受到Sp1与Sp3的调控 .  相似文献   

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