Decesse J T, Medjkane S, Datto M B, Crémisi C E
Laboratoire Oncogénèse, Différenciation et Transduction du Signal, CNRS UPR 9079, Institut André Lwoff, 7 rue Guy Moquet, 94801 Villejuif, France.
Oncogene. 2001 Feb 22;20(8):962-71. doi: 10.1038/sj.onc.1204169.
We have previously shown that RB plays an important role in the maintenance of the epithelial phenotype. p21 is also involved in several terminal differentiation systems including keratinocytes. We report here that p21 is an RB target gene in epithelial cells, but not in fibroblasts where RB is unable to transactivate p21 transcriptional expression. In epithelial cells, when RB family factors were inactivated by SV40 T antigen (LT), p21 expression was strongly repressed, whereas its expression was not affected when the cells were transformed by a mutated LT leaving RB active but inactivating p53. Moreover, retransformation by RB of LT transformed epithelial cells totally restored p21 expression. By cotransfection experiments and using deletions and point mutations of the p21 promoter, we show that the minimal region required for the RB-mediated transcriptional activation maps to a GC-rich region located between -83 and -74. This region is shown to interact specifically with the transcription factor Sp1 and Sp3. Thus for the first time, we show a positive transcriptional relationship between RB and p21 in epithelial cells. Since p21 keeps RB in a hypophosphorylated state important for its transcriptional activity during differentiation, our results imply an auto-loop of regulation between RB and p21 that may be essential for the maintenance of the differentiation state. We propose that this transcriptional relationship might be necessary of their roles in cell cycle arrest and in several differentiation pathways.
我们之前已经表明,RB在上皮细胞表型的维持中发挥着重要作用。p21也参与了包括角质形成细胞在内的多个终末分化系统。我们在此报告,p21是上皮细胞中的RB靶基因,但在成纤维细胞中并非如此,在成纤维细胞中RB无法激活p21的转录表达。在上皮细胞中,当RB家族因子被SV40 T抗原(LT)失活时,p21表达被强烈抑制,而当细胞被突变的LT转化从而使RB保持活性但使p53失活时,其表达不受影响。此外,用RB对LT转化的上皮细胞进行再转化可完全恢复p21表达。通过共转染实验以及使用p21启动子的缺失和点突变,我们表明RB介导的转录激活所需的最小区域定位于位于-83至-74之间的富含GC的区域。该区域被证明与转录因子Sp1和Sp3特异性相互作用。因此,我们首次在上皮细胞中展示了RB与p21之间的正向转录关系。由于p21在分化过程中使RB保持对其转录活性重要的低磷酸化状态,我们的结果暗示了RB与p21之间的调节自循环,这可能对维持分化状态至关重要。我们提出这种转录关系可能是它们在细胞周期停滞和多个分化途径中发挥作用所必需的。