Sommer Klaus W, Schamberger Chantal J, Schmidt Gerlinde E, Sasgary Soleman, Cerni Christa
Institute of Cancer Research, University of Vienna, Borschkegasse 8a, A-1090 Vienna, Austria.
Oncogene. 2003 Jul 3;22(27):4266-80. doi: 10.1038/sj.onc.1206509.
Among the inhibitors of apoptosis proteins (IAPs), survivin has attracted special attention through its involvement in human cancer. The mechanism underlying tumour-associated survivin re-expression is not known. We found a correlation between exogenous c-H-Ras oncoprotein and endogenous survivin in a series of rat cell lines, which expressed defined oncogenes. Moreover, human HaCat cells, transfected with a constitutively activated c-H-ras gene, had significantly increased survivin levels. To study the interdependence of the two proteins, we generated a rat cell line that expressed a dexamethasone-inducible c-H-ras construct. Induction of c-H-Ras expression was followed by rapid upregulation of survivin. Conversely, downregulation of the oncoprotein resulted in prompt reduction of survivin to baseline value. c-H-Ras-induced survivin was expressed constitutively and independent of cell cycle progression or proliferation. Compromising Ras-stimulated PI3-K activity and MEK1 by chemicals abolished survivin expression and was associated with apoptotic cell death. Upregulation of survivin appeared to be an important activity of c-H-Ras oncoprotein, since cotransfection of a survivin-antisense construct into c-myc/c-H-ras-transfected primary rat embryo cells resulted in profound reduction of transformed clones. It is tempted to speculate that the frequent presence of survivin in human cancer cells might be a consequence of activated Ras-signalling pathways.
在凋亡抑制蛋白(IAPs)中,生存素因其与人类癌症相关而备受关注。肿瘤相关生存素重新表达的潜在机制尚不清楚。我们在一系列表达特定癌基因的大鼠细胞系中发现了外源性c-H-Ras癌蛋白与内源性生存素之间的相关性。此外,用组成型激活的c-H-ras基因转染的人HaCaT细胞,其生存素水平显著升高。为了研究这两种蛋白之间的相互依赖性,我们构建了一个表达地塞米松诱导型c-H-ras构建体的大鼠细胞系。c-H-Ras表达的诱导随后伴随着生存素的快速上调。相反,癌蛋白的下调导致生存素迅速降至基线值。c-H-Ras诱导的生存素持续表达,且与细胞周期进程或增殖无关。用化学物质抑制Ras刺激的PI3-K活性和MEK1可消除生存素的表达,并与凋亡性细胞死亡相关。生存素的上调似乎是c-H-Ras癌蛋白的一项重要活性,因为将生存素反义构建体共转染到c-myc/c-H-ras转染的原代大鼠胚胎细胞中,可导致转化克隆显著减少。人们不禁推测,人类癌细胞中生存素的频繁存在可能是Ras信号通路激活的结果。