Sellers W R, Novitch B G, Miyake S, Heith A, Otterson G A, Kaye F J, Lassar A B, Kaelin W G
The Dana-Farber Cancer Institute and Harvard Medical School, Boston, Massachusetts 02115, USA.
Genes Dev. 1998 Jan 1;12(1):95-106. doi: 10.1101/gad.12.1.95.
The retinoblastoma tumor suppressor protein (pRB) can inhibit cell cycle progression and promote differentiation. pRB interacts with a variety of transcription factors, including members of the E2F and C-EBP protein families and MyoD, and can either repress or activate transcription depending on the promoter under study. These biological and biochemical activities of pRB have been mapped previously to a core domain, referred to as the pRB pocket. Using a panel of synthetic pRB pocket mutants, we found that the acute induction of a G1/S block by pRB is linked to its ability to both bind to E2F and to repress transcription. In contrast, these functions were not required for pRB to promote differentiation, which correlated with its ability to activate transcription in concert with fate-determining proteins such as MyoD. All tumor-derived pRB mutants tested to date failed to bind to E2F and did not repress transcription. Despite an inability to bind to E2F, pRB mutants associated with a low risk of retinoblastoma, unlike high-risk mutants, retained the ability to activate transcription and promote differentiation. Thus, the pRB pocket participates in dual tumor suppressor functions, one linked to cell cycle progression and the other to differentiation control, and these functions can be genetically and mechanistically dissociated.
视网膜母细胞瘤肿瘤抑制蛋白(pRB)可抑制细胞周期进程并促进分化。pRB与多种转录因子相互作用,包括E2F和C-EBP蛋白家族成员以及MyoD,并且根据所研究的启动子,它既可以抑制也可以激活转录。pRB的这些生物学和生化活性先前已定位到一个核心结构域,称为pRB口袋。使用一组合成的pRB口袋突变体,我们发现pRB对G1/S期阻滞的急性诱导与其结合E2F和抑制转录的能力有关。相比之下,pRB促进分化并不需要这些功能,这与其与命运决定蛋白(如MyoD)协同激活转录的能力相关。迄今为止测试的所有肿瘤来源的pRB突变体均无法结合E2F且不抑制转录。尽管无法结合E2F,但与视网膜母细胞瘤低风险相关的pRB突变体与高风险突变体不同,保留了激活转录和促进分化的能力。因此,pRB口袋参与了双重肿瘤抑制功能,一种与细胞周期进程相关,另一种与分化控制相关,并且这些功能在遗传和机制上可以分离。