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1.
Protein-binding elements in the promoter region of the mouse p53 gene   总被引:8,自引:0,他引:8  
D Ginsberg  M Oren  M Yaniv  J Piette 《Oncogene》1990,5(9):1285-1290
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 目的 鉴定HeLa细胞中调控ezrin基因基本启动子活性的顺式作用元件,探讨ezrin基因在HeLa细胞的表达调控机制。 方法 采用碱基定点突变实验和双荧光素酶报告基因分析系统,检测在HeLa细胞中Sp1结合位点(-75/-69, 相对于转录起始位点)和AP 1结合位点(-64/-58)对人ezrin基因基本启动子活性的影响;采用电泳迁移率变动分析法(EMSA)实验,检测ezrin基因基本启动子区序列与HeLa细胞核蛋白提取物的特异性结合活性。 结果 在HeLa细胞中,单独删除和置换Sp1结合位点或AP 1结合位点,ezrin基因基本启动子活性降低50%左右;同时置换Sp1结合位点和AP 1结合位点,启动子活性几乎完全丧失。ezrin基因基本启动子序列能够与HeLa细胞核蛋白提取物相结合。 结论 HeLa细胞中,Sp1结合位点和AP 1结合位点为ezrin基因基本启动子区的重要转录调控元件,有可能存在某种转录因子与之结合,激活ezrin基因转录。  相似文献   

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Expression of the MUC2 gene is controlled by the methylation of CpG sites in the promoter region, but the detailed methylation status of this region has yet to be reported. We have mapped the complete methylation status of the MUC2 promoter from position -1989 to position +288 upstream, a region that contains 59 CpG sites, using bisulfite genomic sequencing in two pancreatic cancer cell lines (PANC1, BxPC3) and in isolated normal colon crypts as a control. The MUC2 promoter in PANC1, a cell line that does not express MUC2, was highly methylated (average 87%, complete methylation at 28 of the 59 CpG sites), while the promoter region in the MUC2-expressing BxPC3 cell line (average 43%, complete methylation at 2 of 59 CpG sites) and in MUC2-expressing normal colon crypts (average 33%, no CpG site was completely methylated) were only partially methylated (P<0.0001). 5-Aza-2'-deoxycytidine treatment of PANC1 cells reduced the methylation level (average 36%) and induced MUC2 mRNA expression. However, mRNA expression of AP2, SP1 and CDX2 was not affected by this treatment. Our data provide the first detailed methylation map of the MUC2 promoter region for the first time, using the conversion-specific bisulfite genomic sequencing. Previously unproven methylation sites were detected, and some AP2 and SP1 binding sites showed different methylation levels among PANC1, BxPC3 and colonic crypt cells. Our mapping data provide an essential basis for further studies of methylation-regulated MUC2 inactivation.  相似文献   

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Increased AP-1 activity in drug resistant human breast cancer MCF-7 cells   总被引:9,自引:0,他引:9  
The expression, DNA binding, and transactivating activity of activator protein 1 (AP-1) was examined in a series of multidrug resistant (MDR) MCF-7 human breast cancer cells that have increasing levels of MDR1 gene expression. We observed an increase in the amount of both c-jun and c-fos mRNA in cells with 12-, 65-, or 200-fold higher resistance to adriamycin when compared to drug-sensitive MCF-7 wild type (WT) cells. Electrophoretic mobility shift assays (EMSA) demonstrated an increase in the DNA binding activity of an AP-1 complex in nuclear extracts from MDR MCF-7 cells when compared to extracts from WT cells. We observed a proportional increase in luciferase expression from a reporter vector containing consensus AP-1 binding sites in transiently transfected MDR cells when compared to WT cells, indicating that AP-1 mediated gene expression is increased in drug-resistant MCF-7 cells. Since the MDR1 promoter contains a putative AP-1 binding site, we used EMSA to examine AP-1 binding activity to an oligonucleotide probe that contained the relevant MDR1 promoter sequences (–123 to –108). Nuclear extracts from resistant MCF-7 cells displayed an increased level of DNA binding of Jun/Jun dimers to the probe, indicating that AP-1 was capable of binding to this promoter site. A luciferase reporter construct containing triplicate copies of the MDR1 promoter sequence was expressed at higher levels in transiently transfected MDR cells when compared to expression in WT cells. Co-transfection of WT cells with a c-jun expression vector and either of the AP-1 luciferase constructs demonstrated that c-jun could activate gene expression from both the consensus and the MDR1 AP-1 sites in a dose dependent manner. In addition, RT-PCR and western blot analysis showed that levels of MDR1 mRNA and Pgp were increased in c-jun transfected WT cells. Taken together, these data indicate that increased AP-1 activity may be an important mediator of MDR by regulating the expression of MDR1.  相似文献   

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A Seth  T S Papas 《Oncogene》1990,5(12):1761-1767
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GDEP (gene differentially expressed in prostate cancer aka. PCAN1), a newly discovered gene with remarkable tissue specificity, is a promising candidate for regulatory analysis because it exhibits a high level of expression that is limited to two tissues, the retina and the prostate. As these two tissues have different origins and disparate functions it is likely that the regulatory mechanisms responsible for expression are not shared in their entirety. In addition, both the retina and prostate are prime targets for gene therapy. To date there have been no functional studies of the GDEP promoter. Therefore to understand tissue-specific expression of GDEP we constructed promoter expression constructs. To further characterize functional regulatory regions within the GDEP gene, we investigated potential regulatory components for tissue-specific expression in the 40 kb intron of this gene. We have identified a 1.5 kb prostate-specific promoter from the proximal region of the GDEP gene. A smaller 0.5 kb promoter exhibited minimal activity in the retinoblastoma cell line Y79, but not in the prostate cells tested. In addition we have investigated three enhancer elements located in the 40 kb intron of the GDEP gene. We identified two enhancer elements that increase reporter gene expression in prostate cell line LNCaP and one additional enhancer element that increases expression in the Y79 cell line approximately 8-fold making it a strong retinal-specific enhancer.  相似文献   

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