Berk A J, Boyer T G, Kapanidis A N, Ebright R H, Kobayashi N N, Horn P J, Sullivan S M, Koop R, Surby M A, Triezenberg S J
Molecular Biology Institute, University of California, Los Angeles 90095-1570, USA.
Cold Spring Harb Symp Quant Biol. 1998;63:243-52. doi: 10.1101/sqb.1998.63.243.
Adenovirus large E1A, Epstein-Barr virus Zebra, and herpes simplex virus VP16 were studied as models of animal cell transcriptional activators. Large E1A can activate transcription from a TATA box, a result that leads us to suggest that it interacts with a general transcription factor. Initial studies showed that large E1A binds directly to the TBP subunit of TFIID. However, analysis of multiple E1A and TBP mutants failed to support the significance of this in vitro interaction for the mechanism of activation. Recent studies to be reported elsewhere indicate that conserved region 3 of large E1A, which is required for its activation function, binds to one subunit of a multisubunit protein that stimulates in vitro transcription in response to large E1A and other activators. A method was developed for the rapid purification of TFIID approximately 25,000-fold to near homogeneity from a cell line engineered to express an epitope-tagged form of TBP. Purified TFIID contains 11 major TAFs ranging in mass from approximately 250 to 20 kD. Zta and VP16, but not large E1A, greatly stimulate the rate and extent of assembly of a TFIID-TFIIA complex on promoter DNA (DA complex). For VP16, this is a function of the carboxy-terminal activation subdomain. An excellent correlation was found between the ability of VP16C mutants to stimulate DA complex assembly and their ability to activate transcription in vivo. Consequently, for a subset of activation domains, DA complex assembly activity is an important component of the overall mechanism of activation.
腺病毒大E1A、爱泼斯坦-巴尔病毒Zebra和单纯疱疹病毒VP16被作为动物细胞转录激活因子的模型进行研究。大E1A能从TATA框激活转录,这一结果使我们推测它与一种通用转录因子相互作用。初步研究表明,大E1A直接与TFIID的TBP亚基结合。然而,对多个E1A和TBP突变体的分析未能支持这种体外相互作用对激活机制的重要性。其他地方即将报道的最新研究表明,大E1A的保守区域3(其激活功能所必需)与一种多亚基蛋白的一个亚基结合,该蛋白响应大E1A和其他激活因子刺激体外转录。开发了一种从工程改造以表达表位标签形式TBP的细胞系中快速纯化TFIID约25000倍至接近均一性的方法。纯化的TFIID包含11种主要的TAF,质量范围从约250至20 kD。Zta和VP16,但不是大E1A,极大地刺激了TFIID-TFIIA复合物在启动子DNA上组装(DA复合物)的速率和程度。对于VP16,这是羧基末端激活亚结构域的功能。发现VP16C突变体刺激DA复合物组装的能力与其在体内激活转录的能力之间具有良好的相关性。因此,对于一部分激活结构域,DA复合物组装活性是激活总体机制的一个重要组成部分。