Narasimha Anil M, Kaulich Manuel, Shapiro Gary S, Choi Yoon J, Sicinski Piotr, Dowdy Steven F
Department of Cellular and Molecular Medicine, University of California, San Diego School of Medicine, La Jolla, United States.
Department of Genetics, Harvard Medical School, Boston, United States.
Elife. 2014 Jun 4;3:e02872. doi: 10.7554/eLife.02872.
The widely accepted model of G1 cell cycle progression proposes that cyclin D:Cdk4/6 inactivates the Rb tumor suppressor during early G1 phase by progressive multi-phosphorylation, termed hypo-phosphorylation, to release E2F transcription factors. However, this model remains unproven biochemically and the biologically active form(s) of Rb remains unknown. In this study, we find that Rb is exclusively mono-phosphorylated in early G1 phase by cyclin D:Cdk4/6. Mono-phosphorylated Rb is composed of 14 independent isoforms that are all targeted by the E1a oncoprotein, but show preferential E2F binding patterns. At the late G1 Restriction Point, cyclin E:Cdk2 inactivates Rb by quantum hyper-phosphorylation. Cells undergoing a DNA damage response activate cyclin D:Cdk4/6 to generate mono-phosphorylated Rb that regulates global transcription, whereas cells undergoing differentiation utilize un-phosphorylated Rb. These observations fundamentally change our understanding of G1 cell cycle progression and show that mono-phosphorylated Rb, generated by cyclin D:Cdk4/6, is the only Rb isoform in early G1 phase.
广泛接受的G1期细胞周期进程模型提出,细胞周期蛋白D:细胞周期蛋白依赖性激酶4/6(Cdk4/6)在G1早期通过逐步多磷酸化(称为低磷酸化)使视网膜母细胞瘤(Rb)肿瘤抑制因子失活,从而释放E2F转录因子。然而,该模型在生物化学上尚未得到证实,Rb的生物活性形式仍然未知。在本研究中,我们发现Rb在G1早期仅被细胞周期蛋白D:Cdk4/6单磷酸化。单磷酸化的Rb由14种独立的异构体组成,这些异构体均被E1a癌蛋白靶向,但显示出优先的E2F结合模式。在G1晚期限制点,细胞周期蛋白E:Cdk2通过量子过度磷酸化使Rb失活。经历DNA损伤反应的细胞激活细胞周期蛋白D:Cdk4/6以产生调节全局转录的单磷酸化Rb,而经历分化的细胞则利用未磷酸化的Rb。这些观察结果从根本上改变了我们对G1期细胞周期进程的理解,并表明由细胞周期蛋白D:Cdk4/6产生的单磷酸化Rb是G1早期唯一的Rb异构体。