Buck V, Allen K E, Sørensen T, Bybee A, Hijmans E M, Voorhoeve P M, Bernards R, La Thangue N B
Laboratory of Eukaryotic Molecular Genetics, MRC National Institute for Medical Research, London, UK.
Oncogene. 1995 Jul 6;11(1):31-8.
The transcription factor DRTF1/E2F is implicated in the control of cellular proliferation due to its interaction with key regulators of cell cycle progression, such as the retinoblastoma tumour suppressor gene product and related pocket proteins, cyclins and cyclin-dependent kinases. DRTF1/E2F DNA binding activity arises when a member of two distinct families of proteins, DP and E2F, interact as DP/E2F heterodimers. Here, we report the isolation and characterisation of a new member of the E2F family of proteins, called E2F-5. E2F-5 was isolated through a yeast two hybrid assay in which a 14.5 d.p.c. mouse embryo library was screened for molecules capable of binding to murine DP-1, but also interacts with all known members of the DP family of proteins. E2F-5 exists as a physiological heterodimer with DP-1 in the generic DRTF1/E2F DNA binding activity present in mammalian cell extracts, an interaction which results in co-operative DNA binding activity and transcriptional activation through the E2F site. A potent transcriptional activation domain, which functions in both yeast and mammalian cells and resides in the C-terminal region of E2F-5, is specifically inactivated upon pocket protein binding. Comparison of the sequence with other members of the family indicates that E2F-5 shows a greater level of similarity with E2F-4 than to E2F-1, -2 and -3. The structural and functional similarity of E2F-5 and E2F-4 defines a subfamily of E2F proteins.
转录因子DRTF1/E2F因其与细胞周期进程的关键调节因子相互作用,而参与细胞增殖的调控,这些关键调节因子包括视网膜母细胞瘤肿瘤抑制基因产物及相关的口袋蛋白、细胞周期蛋白和细胞周期蛋白依赖性激酶。当两个不同蛋白质家族的成员DP和E2F作为DP/E2F异二聚体相互作用时,会产生DRTF1/E2F DNA结合活性。在此,我们报告了E2F蛋白家族一个新成员E2F - 5的分离和特性鉴定。E2F - 5是通过酵母双杂交试验分离得到的,在该试验中,筛选了14.5天胚胎期的小鼠胚胎文库,以寻找能够与鼠DP - 1结合的分子,并且E2F - 5还能与DP蛋白家族的所有已知成员相互作用。在哺乳动物细胞提取物中存在的一般DRTF1/E2F DNA结合活性中,E2F - 5以与DP - 1形成的生理性异二聚体形式存在,这种相互作用导致协同DNA结合活性,并通过E2F位点进行转录激活。一个在酵母和哺乳动物细胞中均起作用、位于E2F - 5 C末端区域的强效转录激活结构域,在与口袋蛋白结合后会被特异性失活。将该序列与家族其他成员进行比较表明,E2F - 5与E2F - 4的相似程度高于与E2F - 1、E2F - 2和E2F - 3的相似程度。E2F - 5和E2F - 4在结构和功能上的相似性定义了E2F蛋白的一个亚家族。