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参与人胎盘催乳素基因转录激活的DNA序列。

DNA sequences involved in the transcriptional activation of a human placental lactogen gene.

作者信息

Fitzpatrick S L, Walker W H, Saunders G F

机构信息

Department of Biochemistry and Molecular Biology, University of Texas M.D. Anderson Cancer Center, Houston 77030.

出版信息

Mol Endocrinol. 1990 Dec;4(12):1815-26. doi: 10.1210/mend-4-12-1815.

Abstract

To identify regulatory elements in the promoter of a human placental lactogen gene (hPL3) that are important for its transcriptional activation, sequences 5' to the start of transcription were linked to the reporter gene chloramphenicol acetyltransferase (CAT) and transiently transfected into JEG-3 cells, a human placental choriocarcinoma cell line. In the presence of the hPL3 enhancer, deletion of the promoter sequence between -142 and -129 basepairs resulted in an 8-fold decrease in CAT activity. Similar results were seen with the SV40 enhancer and the hPL3 promoter in HepG2 liver cells. Nuclear proteins from HepG2, HeLa, and JEG-3 cells formed specific binding complexes with this region of the hPL3 promoter by a gel mobility shift assay, indicating that the DNA-binding protein was not tissue specific. The -142 to -129 basepair region contains a sequence similar to that of a variant binding site for the transcription factor Sp1. An oligonucleotide containing Sp1-binding sites specifically competes for proteins binding the hPL3 promoter, and the methylation interference pattern is similar to that for an Sp1-binding site. This suggests that the hPL3 promoter binds Sp1- or an Sp1-like trans-acting factor, and this binding site is important for transcriptional regulation by the hPL3 enhancer in PL-producing cells.

摘要

为了鉴定人胎盘催乳素基因(hPL3)启动子中对其转录激活至关重要的调控元件,将转录起始点上游5'端的序列与报告基因氯霉素乙酰转移酶(CAT)连接,并瞬时转染到人胎盘绒毛膜癌细胞系JEG-3细胞中。在hPL3增强子存在的情况下,-142至-129碱基对之间的启动子序列缺失导致CAT活性降低8倍。在HepG2肝细胞中,使用SV40增强子和hPL3启动子也观察到了类似结果。通过凝胶迁移率变动分析,来自HepG2、HeLa和JEG-3细胞的核蛋白与hPL3启动子的该区域形成了特异性结合复合物,这表明DNA结合蛋白不是组织特异性的。-142至-129碱基对区域包含一个与转录因子Sp1的变体结合位点序列相似的序列。含有Sp1结合位点的寡核苷酸特异性竞争与hPL3启动子结合的蛋白质,并且甲基化干扰模式与Sp1结合位点的相似。这表明hPL3启动子结合Sp1或类似Sp1的反式作用因子,并且该结合位点对于PL产生细胞中hPL3增强子的转录调控很重要。

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