Ozer J, Mitsouras K, Zerby D, Carey M, Lieberman P M
The Wistar Institute, Philadelphia, Pennsylvania 19104, USA.
J Biol Chem. 1998 Jun 5;273(23):14293-300. doi: 10.1074/jbc.273.23.14293.
The interaction of the general transcription factor (TF) IIA with TFIID is required for transcription activation in vitro. TFIID consists of the TATA-binding protein (TBP) and TBP associated factors (TAFIIs). TFIIA binds directly to TBP and stabilizes its interaction with TATA-containing DNA. In this work, we present evidence that TAFIIs inhibit TBP-DNA and TBP-TFIIA binding, and that TFIIA stimulates transcription, in part, by overcoming this TAFII-mediated inhibition of TBP-DNA binding. TFIIA mutants modestly compromised for interaction with TBP were found to be significantly more defective in forming complexes with TFIID. Subtle changes in the stability or conformation of the TFIIA-TBP complex resulted in a failure of TFIIA to overcome TAFII-mediated inhibition of TBP-DNA binding and transcription function. Inhibition of TBP-DNA binding by TAFIIs could be partially relieved by limited proteolysis of TFIID. Proteolysis significantly stimulated TFIIA-TFIID-TATA binding in both electrophoresis mobility shift assay and DNase I footprinting but had little effect on complexes formed with TBP. Recombinant TAFII250 inhibits TBP-DNA binding, whereas preincubation of TFIIA with TBP prevents this inhibition. Thus, TFIIA competes with TAFII250 for access to TBP and alters the TATA binding properties of the resulting complex. Transcriptional activation by Zta was enhanced by temperature shift inactivation of TAFII250 in the ts13 cell line, suggesting that TAFII250 has transcriptional inhibitory activity in vivo. Together, these results suggest that TAFIIs may regulate transcription initiation by inhibiting TBP-TFIIA and TBP-DNA complex formation.
通用转录因子(TF)IIA与TFIID的相互作用是体外转录激活所必需的。TFIID由TATA结合蛋白(TBP)和TBP相关因子(TAFIIs)组成。TFIIA直接与TBP结合,并稳定其与含TATA的DNA的相互作用。在这项工作中,我们提供证据表明,TAFIIs抑制TBP-DNA和TBP-TFIIA的结合,并且TFIIA部分地通过克服这种TAFII介导的对TBP-DNA结合的抑制来刺激转录。发现与TBP相互作用适度受损的TFIIA突变体在与TFIID形成复合物方面有明显更多的缺陷。TFIIA-TBP复合物稳定性或构象的细微变化导致TFIIA无法克服TAFII介导的对TBP-DNA结合和转录功能的抑制。TAFIIs对TBP-DNA结合的抑制可通过TFIID的有限蛋白酶解部分缓解。蛋白酶解在电泳迁移率变动分析和DNase I足迹分析中均显著刺激TFIIA-TFIID-TATA结合,但对与TBP形成的复合物影响很小。重组TAFII250抑制TBP-DNA结合,而TFIIA与TBP的预孵育可防止这种抑制。因此,TFIIA与TAFII250竞争与TBP结合,并改变所得复合物的TATA结合特性。在ts13细胞系中,通过TAFII250的温度转换失活增强了Zta的转录激活,这表明TAFII250在体内具有转录抑制活性。总之,这些结果表明TAFIIs可能通过抑制TBP-TFIIA和TBP-DNA复合物的形成来调节转录起始。