Lee S, Hahn S
Fred Hutchinson Cancer Research Center, Seattle, Washington 98104, USA.
Nature. 1995 Aug 17;376(6541):609-12. doi: 10.1038/376609a0.
Transcription factor TFIIB is essential for the formation of RNA polymerase II initiation complexes where it binds to the TATA-binding protein (TBP) complex with DNA and recruits RNA polymerase II. TFIIB is probably a target for various activators. Several models have been proposed for the position of TFIIB in the TFIIB-TBP-DNA complex. Here we examine the structure of this complex using gel mobility-shift assays and hydroxyl-radical footprinting. TFIIB requires at least seven base pairs of DNA on either side of the TATA box to form a stable TFIIB-TBP-DNA complex. The sugar residues protected from hydroxyl-radical cleavage by the TFIIB-TBP complex were mapped on the crystal-structure model of the TBP-DNA complex. This analysis suggests that TFIIB binds beneath the concave surface of TBP, contacting DNA both upstream and downstream of the TATA box. Our model predicts that TFIIB binds close to the C-terminal stirrup of TBP and provides one explanation for why TBP needs to bend DNA.
转录因子TFIIB对于RNA聚合酶II起始复合物的形成至关重要,它与TATA结合蛋白(TBP)复合物结合于DNA,并招募RNA聚合酶II。TFIIB可能是各种激活因子的作用靶点。关于TFIIB在TFIIB-TBP-DNA复合物中的位置,已经提出了几种模型。在这里,我们使用凝胶迁移率变动分析和羟基自由基足迹法来研究该复合物的结构。TFIIB在TATA框两侧至少需要七个碱基对的DNA才能形成稳定的TFIIB-TBP-DNA复合物。通过TFIIB-TBP复合物免受羟基自由基切割的糖残基被定位在TBP-DNA复合物的晶体结构模型上。该分析表明,TFIIB结合在TBP凹面下方,与TATA框上下游的DNA接触。我们的模型预测TFIIB靠近TBP的C末端马镫形结构结合,并为TBP为何需要弯曲DNA提供了一种解释。