Hoffmeister Albrecht, Ropolo Alejandro, Vasseur Sophie, Mallo Gustavo V, Bodeker Hans, Ritz-Laser Beate, Dressler Gregory R, Vaccaro Maria Ines, Dagorn Jean-Charles, Moreno Silvia, Iovanna Juan Lucio
Centre de Recherche INSERM, EMI 0116, 163 avenue de Luminy, Campus de Luminy, BP 172, 13276 Marseille cedex 9, France.
J Biol Chem. 2002 Jun 21;277(25):22314-9. doi: 10.1074/jbc.M201657200. Epub 2002 Apr 8.
p8 is a nuclear DNA-binding protein, which was identified because its expression is strongly activated in response to several stresses. Biochemical and biophysical studies revealed that despite a weak sequence homology p8 is an HMG-I/Y-like protein, suggesting that p8 may be involved in transcription regulation. Results reported here strongly support this hypothesis. Using a pull-down approach, we found that p8 interacts with the general co-activator p300. We also found that, similar to the HMG proteins, p300 was able to acetylate recombinant p8 in vitro, although the significance of such modification remains to be determined. Then a screening by the two-hybrid system, using p8 as bait, allowed us to identify the Pax2 trans-activation domain-interacting protein (PTIP) as another partner of p8. Transient transfection studies revealed that PTIP is a strong inhibitor of the trans-activation activities of Pax2A and Pax2B on the glucagon gene promoter, which was chosen as a model because it is a target of the Pax2A and Pax2B transcription factors. This effect is completely abolished by co-transfection of p8 in glucagon-producing InRIG9 cells, indicating that p8 binding to PTIP prevents inhibition of the glucagon gene promoter. This was not observed in NIH3T3 fibroblasts that do not express glucagon. Finally, expression of p8 enhances the effect of p300 on Pax2A and Pax2B trans-activation of the glucagon gene promoter. These observations suggest that in glucagon-producing cells p8 is a positive cofactor of the activation of the glucagon gene promoter by Pax2A and Pax2B, both by recruiting the p300 cofactor to increase the Pax2A and Pax2B activities and by binding the Pax2-interacting protein PTIP to suppress its inhibition.
p8是一种核DNA结合蛋白,因其表达在多种应激反应中被强烈激活而被鉴定出来。生化和生物物理研究表明,尽管p8的序列同源性较弱,但它是一种HMG-I/Y样蛋白,这表明p8可能参与转录调控。本文报道的结果有力地支持了这一假说。通过下拉实验方法,我们发现p8与通用辅激活因子p300相互作用。我们还发现,与HMG蛋白类似,p300能够在体外使重组p8发生乙酰化,尽管这种修饰的意义仍有待确定。然后,以p8为诱饵,通过双杂交系统进行筛选,使我们能够鉴定出Pax2反式激活结构域相互作用蛋白(PTIP)是p8的另一个伙伴。瞬时转染研究表明,PTIP是胰高血糖素基因启动子上Pax2A和Pax2B反式激活活性的强抑制剂,选择该启动子作为模型是因为它是Pax2A和Pax2B转录因子的一个靶标。在产生胰高血糖素的InRIG9细胞中共转染p8可完全消除这种作用,这表明p8与PTIP的结合可防止胰高血糖素基因启动子受到抑制。在不表达胰高血糖素的NIH3T3成纤维细胞中未观察到这种现象。最后,p8的表达增强了p300对胰高血糖素基因启动子的Pax2A和Pax2B反式激活作用。这些观察结果表明,在产生胰高血糖素的细胞中,p8是Pax2A和Pax2B激活胰高血糖素基因启动子的正性辅助因子,其作用方式一是招募p300辅助因子以增强Pax2A和Pax2B的活性,二是结合与Pax2相互作用的蛋白PTIP以抑制其抑制作用。