Wang E H, Zou S, Tjian R
Department of Pharmacology, School of Medicine, University of Washington, Seattle, Washington 98195-7280 USA.
Genes Dev. 1997 Oct 15;11(20):2658-69. doi: 10.1101/gad.11.20.2658.
A specific mutation in TAFII250, the largest subunit of the transcription factor TFIID, disrupts cell growth control in the temperature-sensitive mutant hamster cell line ts13. Transcription from the cyclin A and D1 but not the c-fos and myc promoters is also dramatically reduced in ts13 cells at the nonpermissive temperature. These findings provide an intriguing link between TAF-mediated transcriptional regulation and cell cycle progression. Here we report the mapping of an enhancer element in the cyclin A promoter (TSRE) that responds to mutations in TAFII250. An analysis of chimeric promoter constructs reveals that the cyclin A TSRE can confer TAFII250 dependence to the core promoter of c-fos. In addition, reciprocal hybrid promoter constructs suggest that TAFII250 also contributes to the transcriptional properties of the cyclin A core promoter. We have purified and identified cellular activators that specifically bind to the TSRE and mediate transcription in a TAFII250-dependent manner. By micropeptide sequencing, we determined that TSRE-binding proteins include members of the activating transcription factor (ATF) family. These results suggest that the ts13 mutation of TAFII250 has compromised the ability of TFIID to mediate activation of transcription by specific enhancer factors such as ATF, as well as to perform certain core promoter functions. These defects in TAFII250 apparently result in the down-regulation of key molecules, such as cyclin A, which may be responsible for the ts13 cell cycle arrest phenotype.
转录因子TFIID的最大亚基TAFII250中的特定突变,破坏了温度敏感型突变仓鼠细胞系ts13中的细胞生长控制。在非允许温度下,ts13细胞中细胞周期蛋白A和D1启动子的转录显著降低,但c-fos和myc启动子的转录未受影响。这些发现揭示了TAF介导的转录调控与细胞周期进程之间的有趣联系。在此,我们报告了细胞周期蛋白A启动子中一个对TAFII250突变有反应的增强子元件(TSRE)的定位。对嵌合启动子构建体的分析表明,细胞周期蛋白A的TSRE可赋予c-fos核心启动子对TAFII250的依赖性。此外,相互杂交启动子构建体表明,TAFII250也对细胞周期蛋白A核心启动子的转录特性有贡献。我们已经纯化并鉴定了能特异性结合TSRE并以TAFII250依赖方式介导转录的细胞激活因子。通过微肽测序,我们确定TSRE结合蛋白包括激活转录因子(ATF)家族的成员。这些结果表明,TAFII250的ts13突变损害了TFIID介导特定增强子因子(如ATF)激活转录以及执行某些核心启动子功能的能力。TAFII250的这些缺陷显然导致了关键分子如细胞周期蛋白A的下调,这可能是ts13细胞周期停滞表型的原因。