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首页> 外文期刊>The biochemical journal >Physical and functional interactions between members of the tumour suppressor p53 and the Sp families of transcription factors: importance for the regulation of genes involved in cell-cycle arrest and apoptosis
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Physical and functional interactions between members of the tumour suppressor p53 and the Sp families of transcription factors: importance for the regulation of genes involved in cell-cycle arrest and apoptosis

机译:肿瘤抑制因子p53的成员与Sp家族的转录因子之间的物理和功能相互作用:调节参与细胞周期阻滞和凋亡的基因的重要性

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pIn the present study, we have investigated mechanisms of transcriptional co-operation between proteins that belong to the tumour suppressor p53 and Sp (specificity protein) families of transcription factors. Such mechanisms may play an important role in the regulation of genes containing binding sites for both classes of transcription factors in their promoters. Two of these genes were analysed in the present study: the cyclin-dependent kinase inhibitor p21supCip1/sup gene and the PUMA (p53-up-regulated mediator of apoptosis) gene. We found that Sp1 and Sp3, but not Sp2, co-operate functionally with p53, p73 and p63 for the synergistic transactivation of the p21supCip1/sup promoter in iDrosophila/i Schneider SL2 cells that lack endogenous Sp factors. We also found that Sp1 strongly transactivated the PUMA promoter synergistically with p53, whereas deletion of the Sp1-binding sites abolished the transactivation by p53. Using p53 mutant forms in GST (glutathione S-transferase) pull-down assays, we found that the C-terminal 101 amino acids of p53, which include the oligomerization and regulatory domains of the protein, are required for the physical interactions with Sp1 and Sp3, and that deletion of this region abolished transactivation of the p21supCip1/sup promoter. Utilizing truncated forms of Sp1, we established that p53 interacted with the two transactivation domains A and B, as well as the DNA-binding domain. Our findings suggest that Sp factors are essential for the cellular responses to p53 activation by genotoxic stress. Understanding in detail how members of the p53 and Sp families of transcription factors interact and work together in the p53-mediated cellular responses may open new horizons in cancer chemotherapy./p
机译:>在本研究中,我们研究了属于肿瘤抑制基因p53的蛋白质和Sp(特异性蛋白质)家族的转录因子之间的转录合作机制。此类机制可能在调节基因中包含启动子中两类转录因子结合位点的基因中起重要作用。在本研究中分析了其中的两个基因:细胞周期蛋白依赖性激酶抑制剂p21 Cip1 基因和PUMA(p53上调凋亡介质)基因。我们发现Sp1和Sp3(而非Sp2)与p53,p73和p63在功能上合作,从而在果蝇Schneider SL2细胞中p21 Cip1 启动子的协同反式激活。缺乏内源性Sp因子。我们还发现Sp1与p53协同增效性强地激活了PUMA启动子,而Sp1结合位点的缺失消除了p53的反激活作用。使用GST(谷胱甘肽S-转移酶)下拉测定法中的p53突变体形式,我们发现p53的C末端101个氨基酸(包括该蛋白的寡聚和调节域)是与Sp1和C1的物理相互作用所必需的。 Sp3,并且该区域的缺失消除了p21 Cip1 启动子的反式激活。利用Sp1的截短形式,我们确定p53与两个反式激活域A和B以及DNA结合域相互作用。我们的发现表明Sp因子对于基因毒性应激对p53激活的细胞应答至关重要。详细了解p53和Sp家族的转录因子成员如何在p53介导的细胞反应中相互作用和协同工作,可能为癌症化疗开辟新的前景。

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