Zou Xianghong, Ray Dipankar, Aziyu Aileen, Christov Konstantin, Boiko Alexander D, Gudkov Andrei V, Kiyokawa Hiroaki
Department of Molecular Genetics, University of Illinois College of Medicine, Chicago, Illinois 60607, USA.
Genes Dev. 2002 Nov 15;16(22):2923-34. doi: 10.1101/gad.1033002.
A large number of human cancers display alterations in the Ink4a/cyclin D/Cdk4 genetic pathway, suggesting that activation of Cdk4 plays an important role in oncogenesis. Here we report that Cdk4-null mouse embryonic fibroblasts are resistant to transformation in response to Ras activation with dominant-negative (DN) p53 expression or in the Ink4a/Arf-null background, judged by foci formation, anchorage-independent growth, and tumorigenesis in athymic mice. Cdk4-null fibroblasts proliferate at normal rates during early passages. Whereas Cdk4(+/+)Ink4a/Arf(-/-) cells are immortal in culture, Cdk4(-/-)Ink4a/Arf(-/-) cells undergo senescence during continuous culture, as do wild-type cells. Activated Ras also induces premature senescence in Cdk4(-/-)Ink4a/Arf(-/-) cells and Cdk4(-/-) cells with DNp53 expression. Thus, Cdk4 deficiency causes senescence in a unique Arf/p53-independent manner, which accounts for the loss of transformation potential. Cdk4-null cells express high levels of p21(Cip1/Waf1) with increased protein stability. Suppression of p21(Cip1/Waf1) by small interfering RNA (siRNA), as well as expression of HPV-E7 oncoprotein, restores immortalization and Ras-mediated transformation in Cdk4(-/-)Ink4a/Arf(-/-) cells and Cdk4(-/-) cells with DNp53 expression. Therefore, Cdk4 is essential for immortalization, and suppression of Cdk4 could be a prospective strategy to recruit cells with inactive Arf/p53 pathway to senescence.
大量人类癌症在Ink4a/细胞周期蛋白D/Cdk4基因途径中表现出改变,这表明Cdk4的激活在肿瘤发生中起重要作用。在此我们报告,通过病灶形成、不依赖贴壁生长以及裸鼠肿瘤发生判断,Cdk4基因缺失的小鼠胚胎成纤维细胞在显性负性(DN)p53表达的Ras激活反应中或在Ink4a/Arf基因缺失背景下对转化具有抗性。Cdk4基因缺失的成纤维细胞在早期传代时以正常速率增殖。虽然Cdk4(+/+)Ink4a/Arf(-/-)细胞在培养中是永生的,但Cdk4(-/-)Ink4a/Arf(-/-)细胞在连续培养过程中会经历衰老,野生型细胞也是如此。激活的Ras也会在Cdk4(-/-)Ink4a/Arf(-/-)细胞和具有DNp53表达的Cdk4(-/-)细胞中诱导过早衰老。因此,Cdk4缺陷以一种独特的不依赖Arf/p53的方式导致衰老,这解释了转化潜能的丧失。Cdk4基因缺失的细胞高水平表达p21(Cip1/Waf1)且蛋白质稳定性增加。通过小干扰RNA(siRNA)抑制p21(Cip1/Waf1)以及HPV-E7癌蛋白的表达,可恢复Cdk4(-/-)Ink4a/Arf(-/-)细胞和具有DNp53表达的Cdk4(-/-)细胞的永生化和Ras介导的转化。因此,Cdk4对于永生化至关重要,抑制Cdk4可能是一种将具有无活性Arf/p53途径的细胞诱导至衰老的前瞻性策略。