Hateboer G, Kerkhoven R M, Shvarts A, Bernards R, Beijersbergen R L
Division of Molecular Carcinogenesis, Netherlands Cancer Institute, Amsterdam.
Genes Dev. 1996 Dec 1;10(23):2960-70. doi: 10.1101/gad.10.23.2960.
E2F transcription factors are key regulators of transcription during the cell cycle. E2F activity is regulated at the level of transcription and DNA binding and by complex formation with the retinoblastoma pocket protein family. We show here that free E2F-1 and E2F-4 transcription factors are unstable and that their degradation is mediated by the ubiquitin-proteasome pathway. Both E2F-1 and E2F-4 are rendered unstable by an epitope in the carboxyl terminus of the proteins, in close proximity to their pocket protein interaction surface. We show that binding of E2F-1 to pRb or E2F-4 to p107 or p130 protects E2Fs from degradation, causing the complexes to be stable. The increased stability of E2F-4 pocket protein complexes may contribute to the maintenance of active transcriptional repression in quiescent cells. Surprisingly, adenovirus transforming proteins, which release pocket protein-E2F complexes, also inhibit breakdown of free E2F. These data reveal an additional level of regulation of E2F transcription factors by targeted proteolysis, which is inhibited by pocket protein binding and adenovirus early region 1 transforming proteins.
E2F转录因子是细胞周期中转录的关键调节因子。E2F的活性在转录和DNA结合水平以及通过与视网膜母细胞瘤口袋蛋白家族形成复合物来进行调节。我们在此表明,游离的E2F-1和E2F-4转录因子不稳定,它们的降解由泛素-蛋白酶体途径介导。E2F-1和E2F-4均因蛋白质羧基末端靠近其口袋蛋白相互作用表面的一个表位而变得不稳定。我们表明,E2F-1与pRb结合或E2F-4与p107或p130结合可保护E2F不被降解,使复合物稳定。E2F-4口袋蛋白复合物稳定性的增加可能有助于维持静止细胞中活跃的转录抑制。令人惊讶的是,释放口袋蛋白-E2F复合物的腺病毒转化蛋白也抑制游离E2F的分解。这些数据揭示了通过靶向蛋白水解对E2F转录因子进行调节的一个额外层面,该调节受到口袋蛋白结合和腺病毒早期区域1转化蛋白的抑制。