Matsuura Isao, Denissova Natalia G, Wang Guannan, He Dongming, Long Jianyin, Liu Fang
Center for Advanced Biotechnology and Medicine,Department of Chemical Biology, Ernest Mario School of Pharmacy, Rutgers, The State University of New Jersey, Piscataway, New Jersey 08854, USA.
Nature. 2004 Jul 8;430(6996):226-31. doi: 10.1038/nature02650.
Transforming growth factor-beta (TGF-beta) potently inhibits cell cycle progression at the G1 phase. Smad3 has a key function in mediating the TGF-beta growth-inhibitory response. Here we show that Smad3 is a major physiological substrate of the G1 cyclin-dependent kinases CDK4 and CDK2. Except for the retinoblastoma protein family, Smad3 is the only CDK4 substrate demonstrated so far. We have mapped CDK4 and CDK2 phosphorylation sites to Thr 8, Thr 178 and Ser 212 in Smad3. Mutation of the CDK phosphorylation sites increases Smad3 transcriptional activity, leading to higher expression of the CDK inhibitor p15. Mutation of the CDK phosphorylation sites of Smad3 also increases its ability to downregulate the expression of c-myc. Using Smad3(-/-) mouse embryonic fibroblasts and other epithelial cell lines, we further show that Smad3 inhibits cell cycle progression from G1 to S phase and that mutation of the CDK phosphorylation sites in Smad3 increases this ability. Taken together, these findings indicate that CDK phosphorylation of Smad3 inhibits its transcriptional activity and antiproliferative function. Because cancer cells often contain high levels of CDK activity, diminishing Smad3 activity by CDK phosphorylation may contribute to tumorigenesis and TGF-beta resistance in cancers.
转化生长因子-β(TGF-β)在G1期可有效抑制细胞周期进程。Smad3在介导TGF-β生长抑制反应中起关键作用。在此我们表明,Smad3是G1期细胞周期蛋白依赖性激酶CDK4和CDK2的主要生理底物。除视网膜母细胞瘤蛋白家族外,Smad3是迄今为止所证实的唯一的CDK4底物。我们已将CDK4和CDK2的磷酸化位点定位到Smad3的苏氨酸8、苏氨酸178和丝氨酸212。CDK磷酸化位点的突变增加了Smad3的转录活性,导致细胞周期蛋白依赖性激酶抑制剂p15的表达升高。Smad3的CDK磷酸化位点的突变也增强了其下调c-myc表达的能力。利用Smad3基因敲除的小鼠胚胎成纤维细胞和其他上皮细胞系,我们进一步表明,Smad3抑制细胞从G1期到S期的进程,并且Smad3中CDK磷酸化位点的突变增强了这种能力。综上所述,这些发现表明,Smad3的CDK磷酸化抑制了其转录活性和抗增殖功能。由于癌细胞通常具有高水平的CDK活性,通过CDK磷酸化降低Smad3活性可能有助于肿瘤发生和癌症中的TGF-β抗性。