Hagemeier C, Cook A, Kouzarides T
Wellcome/CRC Institute, Cambridge, UK.
Nucleic Acids Res. 1993 Nov 11;21(22):4998-5004. doi: 10.1093/nar/21.22.4998.
The retinoblastoma (RB) tumour suppressor protein is capable of repressing the activity of promoters containing DNA binding sites for the transcription factor E2F. Recently a protein which binds RB and possesses the DNA binding characteristics of E2F has been cloned. Here we show that the E2F activation domain is the target for RB-induced repression. RB can silence the 57 residue E2F activation domain but cannot effectively repress an E2F mutant which has reduced RB binding capacity. Extensive mutagenesis of E2F shows residues involved in RB binding are required for transcription activation. Mutations which affect both functions most dramatically lie within the minimal RB binding region. A further subset of sensitive residues lies within a new repeat motif E/DF XX L X P which flanks the minimum RB binding site. These data show that RB can mask E2F residues involved in the activation process, possibly by mimicking a component of the transcriptional machinery. Consistent with this model, we find that the TATA box binding protein TBP can bind to the E2F activation domain in vitro in a manner indistinguishable from that of RB.
视网膜母细胞瘤(RB)抑癌蛋白能够抑制含有转录因子E2F DNA结合位点的启动子的活性。最近,一种与RB结合并具有E2F DNA结合特性的蛋白质已被克隆。在此我们表明,E2F激活域是RB诱导的抑制作用的靶点。RB能够使57个残基的E2F激活域沉默,但不能有效抑制RB结合能力降低的E2F突变体。对E2F进行广泛的诱变表明,参与RB结合的残基是转录激活所必需的。最显著影响这两种功能的突变位于最小RB结合区域内。另一组敏感残基位于最小RB结合位点两侧的新重复基序E/DF XX L X P内。这些数据表明,RB可能通过模拟转录机制的一个组成部分来掩盖参与激活过程的E2F残基。与此模型一致,我们发现TATA盒结合蛋白TBP在体外能够以与RB无法区分的方式结合到E2F激活域上。