Sunters Andrew, Thomas David P, Yeudall W Andrew, Grigoriadis Agamemnon E
Department of Craniofacial Development, King's College London, Guy's Hospital, Guy's Tower, United Kingdom.
J Biol Chem. 2004 Mar 12;279(11):9882-91. doi: 10.1074/jbc.M310184200. Epub 2003 Dec 29.
Transgenic mice overexpressing the c-Fos oncoprotein develop osteosarcomas that are associated with deregulated expression of cell cycle genes. Here we have generated osteoblast cell lines expressing c-fos under the control of a tetracycline-regulatable promoter to investigate the role of c-Fos in osteoblast cell cycle control in vitro. Three stable subclones, AT9.2, AT9.3, and AT9.7, derived from MC3T3-E1 mouse osteoblasts, expressed high levels of exogenous c-fos mRNA and protein in the absence of tetracycline. Functional contribution of ectopic c-Fos to AP-1 complexes was confirmed by electromobility shift assays and transactivation of AP-1 reporter constructs. Induction of exogenous c-Fos in quiescent AT9.2 cells caused accelerated S-phase entry following serum stimulation, resulting in enhanced growth rate. Ectopic c-Fos resulted in increased expression of cyclins A and E protein levels, and premature activation of cyclin A-, cyclin E-, and cyclin-dependent kinase (CDK) 2-associated kinase activities, although cyclin D levels and CDK4 activity were not affected significantly in these cell lines. The enhanced CDK2 kinase activity was associated with a rapid, concomitant dissociation of p27 from CDK2-containing complexes. Deregulated cyclin A expression and CDK2 activity was also observed in primary mouse osteoblasts overexpressing c-Fos, but not in fibroblasts, and c-Fos transgenic tumor-derived osteosarcoma cells constitutively expressed high levels of cyclin A protein. These data suggest that overexpression of c-Fos in osteoblasts results in accelerated S phase entry as a result of deregulated cyclin A/E-CDK2 activity. This represents a novel role for c-Fos in osteoblast growth control and may provide c-Fos-overexpressing osteoblasts with a growth advantage during tumorigenesis.
过度表达c-Fos癌蛋白的转基因小鼠会发生骨肉瘤,这与细胞周期基因的表达失调有关。在此,我们构建了在四环素调控启动子控制下表达c-fos的成骨细胞系,以研究c-Fos在体外成骨细胞周期调控中的作用。从MC3T3-E1小鼠成骨细胞衍生出的三个稳定亚克隆AT9.2、AT9.3和AT9.7,在无四环素的情况下表达高水平的外源性c-fos mRNA和蛋白。通过电泳迁移率变动分析和AP-1报告基因构建体的反式激活,证实了异位c-Fos对AP-1复合物的功能贡献。在静止的AT9.2细胞中诱导外源性c-Fos会导致血清刺激后S期进入加速,从而提高生长速率。异位c-Fos导致细胞周期蛋白A和E蛋白水平表达增加,以及细胞周期蛋白A、细胞周期蛋白E和细胞周期蛋白依赖性激酶(CDK)2相关激酶活性的过早激活,尽管在这些细胞系中细胞周期蛋白D水平和CDK4活性未受到显著影响。增强的CDK2激酶活性与p27从含CDK2的复合物中快速、同时解离有关。在过度表达c-Fos的原代小鼠成骨细胞中也观察到细胞周期蛋白A表达失调和CDK2活性增强,但在成纤维细胞中未观察到,并且c-Fos转基因肿瘤衍生的骨肉瘤细胞组成性地表达高水平的细胞周期蛋白A蛋白。这些数据表明,成骨细胞中c-Fos的过度表达导致细胞周期蛋白A/E-CDK2活性失调,从而使S期进入加速。这代表了c-Fos在成骨细胞生长控制中的新作用,并可能在肿瘤发生过程中为过度表达c-Fos的成骨细胞提供生长优势。