Rohaly Gabor, Chemnitz Jan, Dehde Silke, Nunez Alejandro Mena, Heukeshoven Jochen, Deppert Wolfgang, Dornreiter Irena
Heinrich-Pette-Institut für Experimentelle Virologie und Immunologie, Universität Hamburg, Martinistrasse 52, D-20251, Hamburg, Germany.
Cell. 2005 Jul 15;122(1):21-32. doi: 10.1016/j.cell.2005.04.032.
The archetypal human tumor suppressor p53 is considered to have unique transactivation properties. The assumption is based on the fact that additionally identified human p53 isoforms lack transcriptional activity. However, we provide evidence for the existence of an alternatively spliced p53 isoform (Deltap53) that exerts its transcriptional activity independent from p53. In contrast to p53, Deltap53 transactivates the endogenous p21 and 14-3-3sigma but not the mdm2, bax, and PIG3 promoter. Cell cycle studies showed that Deltap53 displays its differential transcriptional activity only in damaged S phase cells. Upon activation of the ATR-intra-S phase checkpoint, Deltap53, but not p53, transactivates the Cdk inhibitor p21. Induction of p21 results in downregulation of cyclin A-Cdk activity and accordingly attenuation of S phase progression. Data demonstrate that the Deltap53-p21-cyclin A-Cdk pathway is crucial to facilitate uncoupling of repair and replication events, indicating that Deltap53 is an essential element of the ATR-intra-S phase checkpoint.
典型的人类肿瘤抑制因子p53被认为具有独特的反式激活特性。这一假设基于另外鉴定出的人类p53异构体缺乏转录活性这一事实。然而,我们提供了证据证明存在一种选择性剪接的p53异构体(Deltap53),它发挥其转录活性独立于p53。与p53不同,Deltap53反式激活内源性p21和14-3-3sigma,但不激活mdm2、bax和PIG3启动子。细胞周期研究表明,Deltap53仅在受损的S期细胞中表现出其差异转录活性。在激活ATR-S期内检查点后,Deltap53而非p53反式激活细胞周期蛋白依赖性激酶抑制剂p21。p21的诱导导致细胞周期蛋白A-细胞周期蛋白依赖性激酶活性下调,从而相应地减弱S期进程。数据表明,Deltap53-p21-细胞周期蛋白A-细胞周期蛋白依赖性激酶途径对于促进修复和复制事件的解偶联至关重要,表明Deltap53是ATR-S期内检查点的一个重要元件。