Sellers W R, Rodgers J W, Kaelin W G
Dana-Farber Cancer Institute, Boston, MA, USA.
Proc Natl Acad Sci U S A. 1995 Dec 5;92(25):11544-8. doi: 10.1073/pnas.92.25.11544.
An intact T/E1A-binding domain (the pocket) is necessary, but not sufficient, for the retinoblastoma protein (RB) to bind to DNA-protein complexes containing E2F and for RB to induce a G1/S block. Indirect evidence suggests that the binding of RB to E2F may, in addition to inhibiting E2F transactivation function, generate a complex capable of functioning as a transrepressor. Here we show that a chimera in which the E2F1 transactivation domain was replaced with the RB pocket could, in a DNA-binding and pocket-dependent manner, mimic the ability of RB to repress transcription and induce a cell cycle arrest. In contrast, a transdominant negative E2F1 mutant that is capable of blocking E2F-dependent transactivation did not. Fusion of the RB pocket to a heterologous DNA-binding domain unrelated to E2F likewise generated a transrepressor protein when scored against a suitable reporter. These results suggest that growth suppression by RB is due, at least in part, to transrepression mediated by the pocket domain bound to certain promoters via E2F.
对于视网膜母细胞瘤蛋白(RB)结合含有E2F的DNA - 蛋白质复合物以及RB诱导G1/S期阻滞而言,完整的T/E1A结合结构域(口袋结构域)是必要的,但并非充分条件。间接证据表明,RB与E2F的结合除了抑制E2F的反式激活功能外,还可能产生一种能够作为反式阻遏物发挥作用的复合物。在此我们表明,一种将E2F1反式激活结构域替换为RB口袋结构域的嵌合体,能够以依赖于DNA结合和口袋结构域的方式,模拟RB抑制转录并诱导细胞周期停滞的能力。相比之下,一种能够阻断E2F依赖性反式激活的显性负性E2F1突变体则不能。当针对合适的报告基因进行检测时,将RB口袋结构域与一个与E2F无关的异源DNA结合结构域融合同样产生了一种反式阻遏蛋白。这些结果表明,RB对生长的抑制作用至少部分归因于口袋结构域通过E2F与某些启动子结合介导的反式阻遏作用。