Sotillo Elena, Garriga Judit, Kurimchak Alison, Graña Xavier
Fels Institute for Cancer Research and Molecular Biology and Department of Biochemistry, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.
J Biol Chem. 2008 Apr 25;283(17):11280-92. doi: 10.1074/jbc.M709055200. Epub 2008 Feb 14.
Cyclin E overexpression is observed in multiple human tumors and linked to poor prognosis. We have previously shown that ectopic expression of cyclin E is sufficient to induce mitogen-independent cell cycle entry in a variety of tumor/immortal cell lines. Here we have investigated the rate-limiting step leading to cell cycle entry in quiescent normal human fibroblasts (NHF) ectopically expressing cyclin E. We found that in serum-starved NHF, cyclin E forms inactive complexes with CDK2 and fails to induce DNA synthesis. Coexpression of SV40 small t antigen (st), but not other tested oncogenes, efficiently induces mitogen-independent CDK2 phosphorylation on Thr-160, CDK2 activation, and DNA synthesis. Additionally, in contact-inhibited NHF ectopically expressing cyclin E, st induces cell cycle entry, continued proliferation, and foci formation. Coexpression of cyclin E and st also bypasses G(0)/G(1) arrests induced by CDK inhibitors. Although CDK2 is dispensable for G(0)/G(1) cell cycle entry and normal proliferation in mammals, CDK2 activity is an essential rate-limiting step in NHF with deregulated cyclin E expression and altered PP2A activity, which endows primary cells with transformed features. Consequently, CDK2 could be targeted therapeutically in tumors that involve these alterations. These data also suggest that alterations prior to cyclin E deregulation facilitate proliferation of tumor cells by bypassing mitogenic requirements and negative regulation by adjacent cells.
在多种人类肿瘤中均观察到细胞周期蛋白E的过表达,且其与预后不良相关。我们之前已经表明,细胞周期蛋白E的异位表达足以在多种肿瘤/永生化细胞系中诱导不依赖有丝分裂原的细胞周期进入。在此,我们研究了在异位表达细胞周期蛋白E的静止正常人类成纤维细胞(NHF)中导致细胞周期进入的限速步骤。我们发现,在血清饥饿的NHF中,细胞周期蛋白E与CDK2形成无活性复合物,且无法诱导DNA合成。SV40小t抗原(st)的共表达,而非其他测试的癌基因,能有效诱导不依赖有丝分裂原的CDK2在苏氨酸160位点的磷酸化、CDK2激活及DNA合成。此外,在异位表达细胞周期蛋白E的接触抑制NHF中,st诱导细胞周期进入、持续增殖及灶性形成。细胞周期蛋白E和st的共表达还能绕过CDK抑制剂诱导的G(0)/G(1)期阻滞。尽管CDK2对于哺乳动物G(0)/G(1)期细胞周期进入和正常增殖并非必需,但在细胞周期蛋白E表达失调且蛋白磷酸酶2A(PP2A)活性改变的NHF中,CDK2活性是一个关键的限速步骤,这赋予了原代细胞转化特征。因此,在涉及这些改变的肿瘤中,CDK2可成为治疗靶点。这些数据还表明,在细胞周期蛋白E失调之前的改变通过绕过有丝分裂原需求和相邻细胞的负调控来促进肿瘤细胞增殖。