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NFBD1,也称MDC1,是一个参与细胞内DNA损伤后细胞应答反应的重要分子.为了进一步深入研究其转录调控机制,本研究克隆鉴定了NFBD1的启动子.首先应用5′ RACE技术鉴定了NFBD1的转录起始位点,首次发现NFBD1至少存在3种丰度和转录起始位点不同的转录变异体.然后,通过PCR定向克隆和酶切亚克隆策略,构建了覆盖NFBD1基因5′侧翼区起始密码子ATG上游5 kb区域的一系列NFBD1启动子荧光素酶报告基因重组体.启动子活性分析表明,NFBD1启动子区域定位于主要转录起始位点区域附近1.5 kb的区域内.采用转录因子结合位点预测分析软件分析表明,NFBD1启动子缺乏TATA盒,但含有典型的CCAAT盒和GC盒以及其它潜在的转录因子结合位点,提示Sp1和NF-Y等转录因子可能参与NFBD1的转录调控  相似文献   

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Steroid receptor binding factor (RBF) was originally isolated from avian oviduct nuclear matrix. When bound to avian genomic DNA, RBF generates saturable high-affinity binding sites for the avian progesterone receptor (PR). Recent studies have shown that RBF binds to a 54 bp element in the 5'-flanking region of the progesterone-regulated avian c-myc gene, and nuclear matrix-like attachment sites flank the RBF element [Lauber et al. (1997) J. Biol. Chem. 272, 24657-24665]. In this paper, electrophoretic mobility shift assays (EMSAs) and S1 nuclease treatment are used to demonstrate that the RBF-maltose binding protei (MBP) fusion protein binds to single-stranded DNA of its element. Only the N-terminal domain of RBF binds the RBF DNA element as demonstrated by southwestern blot analyses, and by competition EMSAs between RBF-MBP and the N-terminal domain. Mass spectrometric analysis of the C-terminal domain of RBF demonstrates its potential to form noncovalent protein-protein interactions via a potential leucine-isoleucine zipperlike structure, suggesting a homo- and/or possible heterodimer structure in solution. These data support that the nuclear matrix binding site (acceptor site) for PR in the c-myc gene promoter is composed of RBF dimers bound to a specific single-stranded DNA element. The dimers of RBF are generated by C-terminal leucine zipper and the DNA binding occurs at the N-terminal parallel beta-sheet DNA binding motif. This complex is flanked by nuclear matrix attachment sites.  相似文献   

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