Ferreira R, Magnaghi-Jaulin L, Robin P, Harel-Bellan A, Trouche D
Laboratoire "Oncogénèse, Différenciation et Transduction du Signal," Centre National de la Recherche Scientifique Unité Propre de Recherche 9079, IFC-01, 94801 Villejuif, France.
Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10493-8. doi: 10.1073/pnas.95.18.10493.
The transcription factor E2F plays a major role in cell cycle control in mammalian cells. E2F binding sites, which are present in the promoters of a variety of genes required for S phase, shift from a negative to a positive role in transcription at the commitment point, a crucial point in G1 that precedes the G1/S transition. Before the commitment point, E2F activity is repressed by members of the pocket proteins family. This repression is believed to be crucial for the proper control of cell growth. We have previously shown that Rb, the founding member of the pocket proteins family, represses E2F1 activity by recruiting the histone deacetylase HDAC1. Here, we show that the two other members of the pocket proteins family, p107 and p130, also are able to interact physically with HDAC1 in live cells. HDAC1 interacts with p107 and Rb through an "LXCXE"-like motif, similar to that used by viral transforming proteins to bind and inactivate pocket proteins. Indeed, we find that the viral transforming protein E1A competes with HDAC1 for p107 interaction. We also demonstrate that p107 is able to interact simultaneously with HDAC1 and E2F4, suggesting a model in which p107 recruits HDAC1 to repress E2F sites. Indeed, we demonstrate that histone deacetylase activity is involved in the p107- or p130-induced repression of E2F4. Taken together, our data suggest that all members of the E2F family are regulated in early G1 by similar complexes, containing a pocket protein and the histone deacetylase HDAC1.
转录因子E2F在哺乳动物细胞的细胞周期调控中发挥着主要作用。E2F结合位点存在于S期所需的多种基因的启动子中,在G1期到G1/S期转变之前的关键节点——承诺点,其在转录中的作用从负向正转变。在承诺点之前,E2F活性受到口袋蛋白家族成员的抑制。这种抑制被认为对细胞生长的适当控制至关重要。我们之前已经表明,口袋蛋白家族的创始成员Rb通过招募组蛋白去乙酰化酶HDAC1来抑制E2F1活性。在此,我们表明口袋蛋白家族的另外两个成员p107和p130在活细胞中也能够与HDAC1发生物理相互作用。HDAC1通过一个类似“LXCXE”的基序与p107和Rb相互作用,类似于病毒转化蛋白用于结合和使口袋蛋白失活的基序。事实上,我们发现病毒转化蛋白E1A与HDAC1竞争与p107的相互作用。我们还证明p107能够同时与HDAC1和E2F4相互作用,这提示了一种模型,即p107招募HDAC1来抑制E2F位点。确实,我们证明组蛋白去乙酰化酶活性参与了p107或p130诱导的E2F4抑制。综上所述,我们的数据表明E2F家族的所有成员在G1早期都受到类似复合物的调控,这些复合物包含一个口袋蛋白和组蛋白去乙酰化酶HDAC1。