Nakajima Yusuke, Yamada Shumpei, Kamata Nobuyuki, Ikeda Masa-aki
Section of Oral and Maxillofacial Surgery, Graduate School, Tokyo Medical and Dental University, Tokyo 113-8549, Japan.
Biochem Biophys Res Commun. 2007 Dec 28;364(4):1050-5. doi: 10.1016/j.bbrc.2007.10.130. Epub 2007 Oct 30.
Cell cycle-dependent transcriptional repression of the E2F1 and B-myb promoters is mediated through E2F-binding sites and adjacent corepressor site (cell cycle gene homology region (CHR)/downstream repression site (DRS)). Here, we show that a factor binding to the B-myb CHR is co-purified with E2F DNA-binding activity, and coimmunoprecipitated with components of E2F/Rb-family repressor complexes, E2F4 and retinoblastoma (Rb) family proteins. In spite of structural and functional similarities, however, the E2F1 and B-myb CHRs exhibited distinct factor-binding specificities. Furthermore, substitution of E2F1 CHR with the B-myb CHR in the E2F1 promoter revealed that the B-myb CHR was unable to repress the E2F1 promoter completely in the G0 phase. These results suggest that transcriptional repression of the E2F1 and B-myb promoters is mediated by physical interaction of E2F/Rb-family repressor complexes with promoter-specific corepressors.
E2F1和B-myb启动子的细胞周期依赖性转录抑制是通过E2F结合位点和相邻的共抑制因子位点(细胞周期基因同源区域(CHR)/下游抑制位点(DRS))介导的。在此,我们表明,与B-myb CHR结合的因子与E2F DNA结合活性共纯化,并与E2F/Rb家族抑制复合物、E2F4和视网膜母细胞瘤(Rb)家族蛋白的成分共免疫沉淀。然而,尽管在结构和功能上有相似之处,E2F1和B-myb CHRs表现出不同的因子结合特异性。此外,在E2F1启动子中用B-myb CHR替换E2F1 CHR表明,B-myb CHR在G0期不能完全抑制E2F1启动子。这些结果表明,E2F1和B-myb启动子的转录抑制是由E2F/Rb家族抑制复合物与启动子特异性共抑制因子的物理相互作用介导的。