首页> 美国卫生研究院文献>Biochemical Journal >Physical interaction of tumour suppressor p53/p73 with CCAAT-binding transcription factor 2 (CTF2) and differential regulation of human high-mobility group 1 (HMG1) gene expression.
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Physical interaction of tumour suppressor p53/p73 with CCAAT-binding transcription factor 2 (CTF2) and differential regulation of human high-mobility group 1 (HMG1) gene expression.

机译:肿瘤抑制因子p53 / p73与CCAAT结合转录因子2(CTF2)的物理相互作用以及人类高迁移率族1(HMG1)基因表达的差异调节。

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摘要

The CCAAT-binding transcription factor (CTF)uclear factor I (NF-I) group of cellular DNA-binding proteins recognizes the sequence GCCAAT and is implicated in eukaryotic transcription, as well as DNA replication. Molecular analysis of human CTF/NF-I cDNA clones revealed multiple mRNA species that contain alternative coding regions, apparently as a result of differential splicing. Expression and functional analysis established that individual gene products can bind to GCCAAT recognition sites and serve as both promoter-selective transcriptional activators and initiation factors for DNA replication. The interaction between CTF2 and p53/p73 was shown to modulate their ability to regulate transcription of their respective target genes. In the present paper, we report that p53 down-regulates the activity of the high mobility group 1 (HMG1) gene promoter, whereas p73alpha up-regulates the activity of this promoter. Furthermore, CTF2 transactivates p53-induced p21 promoter activity, but inhibits p73alpha-induced p21 promoter activity. Using deletion mutants, we found that the DNA-binding domains of both p53 and p73alpha are required for physical interaction with CTF2 via the regions between amino acid residues 161 and 223, and 228 and 312 respectively. CTF2 enhances the DNA-binding activity of p53 and inhibits the DNA-binding activity of p73alpha. These results provide novel information on the functional interplay between CTF2 and p53/p73 as important determinants of their function in cell proliferation, apoptosis, DNA repair and cisplatin resistance.
机译:细胞DNA结合蛋白的CCAAT结合转录因子(CTF)/核因子I(NF-I)组识别序列GCCAAT,并参与真核转录以及DNA复制。对人CTF / NF-1 cDNA克隆的分子分析显示,显然有差异剪接的结果,多个mRNA种类均含有其他编码区。表达和功能分析确定,单个基因产物可以结合到GCCAAT识别位点,并充当启动子选择性转录激活因子和DNA复制的起始因子。已显示CTF2和p53 / p73之间的相互作用可调节其调节各自靶基因转录的能力。在本文中,我们报道了p53下调了高迁移率族1(HMG1)基因启动子的活性,而p73alpha上调了该启动子的活性。此外,CTF2反激活p53诱导的p21启动子活性,但抑制p73alpha诱导的p21启动子活性。使用缺失突变体,我们发现p53和p73alpha的DNA结合域是通过氨基酸残基161和223、228和312之间的区域与CTF2进行物理相互作用所必需的。 CTF2增强p53的DNA结合活性,并抑制p73alpha的DNA结合活性。这些结果提供了有关CTF2和p53 / p73之间功能相互作用的新信息,这些功能是它们在细胞增殖,凋亡,DNA修复和顺铂耐药性中作用的重要决定因素。

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