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PNAS Plus: Chemical-genetic analysis of cyclin dependent kinase 2 function reveals an important role in cellular transformation by multiple oncogenic pathways

机译:PNAS Plus:细胞周期蛋白依赖性激酶2功能的化学遗传分析揭示了多种致癌途径在细胞转化中的重要作用

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摘要

A family of conserved serine/threonine kinases known as cyclin-dependent kinases (CDKs) drives orderly cell cycle progression in mammalian cells. Prior studies have suggested that CDK2 regulates S-phase entry and progression, and frequently shows increased activity in a wide spectrum of human tumors. Genetic KO/knockdown approaches, however, have suggested that lack of CDK2 protein does not prevent cellular proliferation, both during somatic development in mice as well as in human cancer cell lines. Here, we use an alternative, chemical-genetic approach to achieve specific inhibition of CDK2 kinase activity in cells. We directly compare small-molecule inhibition of CDK2 kinase activity with siRNA knockdown and show that small-molecule inhibition results in marked defects in proliferation of nontransformed cells, whereas siRNA knockdown does not, highlighting the differences between these two approaches. In addition, CDK2 inhibition drastically diminishes anchorage-independent growth of human cancer cells and cells transformed with various oncogenes. Our results establish that CDK2 activity is necessary for normal mammalian cell cycle progression and suggest that it might be a useful therapeutic target for treating cancer.
机译:保守的丝氨酸/苏氨酸激酶家族,称为细胞周期蛋白依赖性激酶(CDK),可驱动哺乳动物细胞中有序的细胞周期进程。先前的研究表明,CDK2调节S期进入和进展,并经常显示出在广泛的人类肿瘤中活性增加。然而,基因KO /基因敲除方法表明,在小鼠以及人类癌细胞系的体细胞发育过程中,缺乏CDK2蛋白都不能阻止细胞增殖。在这里,我们使用一种替代的化学遗传方法来实现细胞中CDK2激酶活性的特异性抑制。我们直接将小分子抑制CDK2激酶活性与siRNA敲低进行比较,并显示小分子抑制导致未转化细胞增殖的明显缺陷,而siRNA敲低则没有,突出了这两种方法之间的差异。此外,CDK2抑制作用大大降低了人类癌细胞和各种癌基因转化细胞的锚定非依赖性生长。我们的结果表明,CDK2活性对于正常的哺乳动物细胞周期进程是必需的,并表明它可能是治疗癌症的有用治疗靶标。

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