Kim Eun-Joo, Park Jong-Sup, Um Soo-Jong
Department of Bioscience and Biotechnology/Institute of Bioscience, Sejong University, 98 Kunja-dong, Kwangjin-gu, Seoul 143-747, Korea.
Nucleic Acids Res. 2003 Sep 15;31(18):5356-67. doi: 10.1093/nar/gkg741.
We performed a yeast two-hybrid screen using p73alpha, which is a member of the p53 family, as bait. We found that the p53 family members were functionally associated with Daxx, which was described originally as a cytoplasmic mediator of Fas signaling, but has been identified recently as a nuclear protein that co-localizes with the promyelocytic leukemia (PML) protein and regulates transcription. Extensive yeast two-hybrid assays indicated a physical interaction between a region including the oligomerization domain (OD) of p73alpha (amino acids 345-380) or p53 (amino acids 319-360) and amino acids 161-311 and 667-740 (C-terminal S/P/T-rich domain) of hDaxx, which is the common binding region of Fas, ASK1 and PML. This interaction was further confirmed by in vitro GST pull-down and in vivo immunoprecipitation assays. Both Daxx and p73/p53 co-localized in nuclear dot-like structures, which are probably nuclear PML oncogenic domains (PODs) or the nuclear domain NB10. Transient co-expression of Daxx resulted in strong inhibition of p73- and p53-mediated transcriptional activation of the synthetic p53-responsive and p21WAF1 promoters. Consequently, Gal4-Daxx repressed basal transcription in a dose-dependent manner. Treatment with trichostatin A, which is an inhibitor of histone deacetylase, or PML over-expression relieved Daxx-mediated transcriptional repression of p53. The mechanism underlying PML-mediated derepression appears to be competitive binding between Daxx, p53 and PML. Taken together, these findings delineate a transcriptional regulatory network that is modulated by differential Daxx-p53-PML interactions in the nuclear PODs. Therefore, Daxx is implicated in the regulation of the cell cycle and apoptosis through transcriptional regulation of p53 and possibly its family members.
我们使用p53家族成员p73α作为诱饵进行了酵母双杂交筛选。我们发现p53家族成员在功能上与Daxx相关,Daxx最初被描述为Fas信号的细胞质介质,但最近被鉴定为一种与早幼粒细胞白血病(PML)蛋白共定位并调节转录的核蛋白。广泛的酵母双杂交分析表明,包含p73α(氨基酸345 - 380)或p53(氨基酸319 - 360)的寡聚化结构域(OD)的区域与hDaxx的氨基酸161 - 311和667 - 740(C端富含S/P/T结构域)之间存在物理相互作用,hDaxx是Fas、ASK1和PML的共同结合区域。这种相互作用通过体外GST下拉和体内免疫沉淀分析得到进一步证实。Daxx和p73/p53都共定位于核点状结构中,这些结构可能是核PML致癌结构域(PODs)或核结构域NB10。Daxx的瞬时共表达导致对合成的p53反应性和p21WAF1启动子的p73和p53介导的转录激活有强烈抑制作用。因此,Gal4 - Daxx以剂量依赖性方式抑制基础转录。用组蛋白脱乙酰酶抑制剂曲古抑菌素A处理或PML过表达可减轻Daxx介导的p53转录抑制。PML介导的去抑制的潜在机制似乎是Daxx、p53和PML之间的竞争性结合。综上所述,这些发现描绘了一个由核PODs中不同的Daxx - p53 - PML相互作用调节的转录调控网络。因此,Daxx通过对p53及其可能的家族成员的转录调控参与细胞周期和细胞凋亡的调节。