Zwicker J, Liu N, Engeland K, Lucibello F C, Müller R
Institut für Molekularbiologie und Tumorforschung, Philipps-Universität Marburg, Germany.
Science. 1996 Mar 15;271(5255):1595-7. doi: 10.1126/science.271.5255.1595.
DNA-binding E2F complexes have been identified throughout the mammalian cell cycle, including the transcriptionally inactive complexes with pocket proteins, which occur early in the prereplicative G1 phase of the cycle, and the transactivating free E2F, which increases in late G1. Here, a regulatory B-myb promoter site was shown to bind with high affinity to free E2F and to E2F-pocket protein complexes in an indistinguishable way in vitro. In contrast, in vivo footprinting with NIH 3T3 cells demonstrated E2F site occupation specifically in early G1, when the B-myb promoter is inactive. These observations indicate that a novel mechanism governs E2F-DNA interactions during the cell cycle and emphasize the relevance of E2F site-directed transcriptional repression.
在整个哺乳动物细胞周期中都已鉴定出DNA结合E2F复合物,包括与口袋蛋白形成的转录无活性复合物,这种复合物出现在细胞周期复制前G1期早期,以及在G1晚期增加的具有反式激活作用的游离E2F。在此,一个调控性B-myb启动子位点在体外被证明能以难以区分的方式与游离E2F以及E2F-口袋蛋白复合物高亲和力结合。相比之下,用NIH 3T3细胞进行的体内足迹分析表明,当B-myb启动子无活性时,E2F位点特异性地在G1早期被占据。这些观察结果表明,一种新机制在细胞周期中调控E2F与DNA的相互作用,并强调了E2F位点定向转录抑制的相关性。