Ohkubo Shuichi, Tanaka Tomoaki, Taya Yoichi, Kitazato Kenji, Prives Carol
Department of Biological Sciences, Columbia University, New York, New York 10027; Cancer Research Laboratory, Taiho Pharmaceutical Co., Ltd., 1-27 Misugidai, Hanno, Saitama 357-8527, Japan.
Department of Biological Sciences, Columbia University, New York, New York 10027.
J Biol Chem. 2006 Jun 23;281(25):16943-16950. doi: 10.1074/jbc.M601388200. Epub 2006 Apr 19.
Mutational inactivation of p53 is only one of the ways that tumors lose p53 function. An alternate route is through overexpression of HDM2, the negative regulator of p53. To further understand how excess HDM2 regulates p53-mediated functions, we generated H1299 cell clones that constitutively express both ectopic HDM2 and tetracycline-regulated inducible p53. We found that over a range of p53 concentrations constitutively expressed HDM2 did not affect the levels of p53 protein. Nevertheless, cells with excess HDM2 displayed numerous changes in their response to p53. After DNA damage, such cells had both increased p53-mediated G2 arrest and reduced cell death. They also showed selective impairment of p53 target gene induction in that some p53 targets were unaffected whereas others were markedly less well induced in the presence of extra HDM2 protein. We also found that excess HDM2 was correlated with reduced p53 acetylation but did not affect p53 association with target promoters in vivo. Indeed, there was no significant difference in the amount of HDM2 associated with p53 at target promoters that differed in their expression depending on the presence of extra HDM2. Thus, HDM2 can selectively down-regulate the transcription function of p53 without either degrading p53 or affecting the interaction of p53 with target promoters.
p53的突变失活只是肿瘤丧失p53功能的方式之一。另一条途径是通过p53的负调节因子HDM2的过表达。为了进一步了解过量的HDM2如何调节p53介导的功能,我们构建了组成型表达异位HDM2和四环素调节的可诱导p53的H1299细胞克隆。我们发现,在一系列p53浓度下,组成型表达的HDM2不影响p53蛋白水平。然而,具有过量HDM2的细胞在对p53的反应中表现出许多变化。DNA损伤后,这类细胞中p53介导的G2期阻滞增加,细胞死亡减少。它们还表现出p53靶基因诱导的选择性受损,即一些p53靶标不受影响,而在存在额外HDM2蛋白的情况下,其他靶标诱导明显较差。我们还发现,过量的HDM2与p53乙酰化减少相关,但在体内不影响p53与靶启动子的结合。事实上,在靶启动子上与p53结合的HDM2量没有显著差异,这些靶启动子的表达因额外HDM2的存在而不同。因此,HDM2可以选择性地下调p53的转录功能,而不降解p53或影响p53与靶启动子的相互作用。