Midgley C A, Lane D P
Department of Biochemistry, University of Dundee, UK.
Oncogene. 1997 Sep 4;15(10):1179-89. doi: 10.1038/sj.onc.1201459.
The tumour suppressor protein p53 is expressed at very low levels in normal cells but accumulates in response to DNA damaging agents such as u.v. irradiation. This increase is accompanied by transcriptional upregulation of the expression of a number of proteins including Mdm2 which can in turn inhibit p53 dependent transcriptional activation, creating a feedback loop resulting in down-regulation of p53 activity. Mutant p53 proteins are however frequently detected at constitutively high levels in many tumours and tumour cell lines, indeed this phenomenon has been used in several studies to diagnose p53 mutation in patient tumours. We show here that expression of mouse mutant p53 in tumour cell lines of this type results in high levels of both the endogenous p53 protein and the exogenously expressed mutant mouse protein, whereas the human tumour line MCF7 does not exhibit high levels of either endogenous human or exogenously expressed mouse mutant p53 unless stabilisation is induced by DNA damage. This suggests that the stability of mutant p53 is not intrinsic to mutant p53 protein structure but may vary in different cell backgrounds. We present evidence that p53 protein stability in tumour cell lines is determined by association with the Mdm2 tumour suppressor protein, and that p53 mutants which are unable to bind Mdm2 are stable in MCF7 cells. We propose that tumour lines which express high levels of transcriptionally inactive mutant p53 are unable to induce the expression of the Mdm2 protein which would normally provide a feedback mechanism down-regulating p53 protein levels in the absence of DNA damage signals. MCF7 cells however express a transcriptionally active p53 and retain the feedback regulation of p53 protein levels by Mdm2.
肿瘤抑制蛋白p53在正常细胞中表达水平极低,但在受到紫外线照射等DNA损伤剂刺激时会积累。这种增加伴随着包括Mdm2在内的多种蛋白质表达的转录上调,而Mdm2又能抑制p53依赖的转录激活,从而形成一个反馈环,导致p53活性下调。然而,在许多肿瘤和肿瘤细胞系中经常检测到突变型p53蛋白持续高水平表达,事实上,这一现象已在多项研究中用于诊断患者肿瘤中的p53突变。我们在此表明,在这类肿瘤细胞系中表达小鼠突变型p53会导致内源性p53蛋白和外源性表达的突变型小鼠蛋白均处于高水平,而人肿瘤细胞系MCF7除非受到DNA损伤诱导使其稳定,否则不会出现内源性人p53或外源性表达的小鼠突变型p53的高水平表达。这表明突变型p53的稳定性并非突变型p53蛋白结构所固有,而是可能因不同的细胞背景而异。我们提供的证据表明,肿瘤细胞系中p53蛋白的稳定性取决于与Mdm2肿瘤抑制蛋白的结合,并且无法结合Mdm2的p53突变体在MCF7细胞中是稳定的。我们提出,表达高水平转录无活性突变型p53的肿瘤细胞系无法诱导Mdm2蛋白的表达,而在没有DNA损伤信号的情况下,Mdm2蛋白通常会提供一种下调p53蛋白水平的反馈机制。然而,MCF7细胞表达具有转录活性的p53,并保留了Mdm2对p53蛋白水平的反馈调节。