Boyer T G, Berk A J
Department of Microbiology and Molecular Genetics, University of California, Los Angeles 90024-1570.
Genes Dev. 1993 Sep;7(9):1810-23. doi: 10.1101/gad.7.9.1810.
The activation domains of several regulatory transcription factors have been shown to bind directly in vitro to the TATA box-binding protein (TBP). Yet TBP must also interact with multiple associated polypeptides, called TAFs, for these same activators to stimulate transcription. These findings raise the question of how TBP can interact with so many proteins, both activators and TAFs, simultaneously. Here, we show that the activation domain of the adenovirus large E1A protein can bind specifically and stably to isolated holo-TFIID, the multisubunit protein complex consisting of TBP plus TAFs. Consequently, the surface of TBP that interacts with E1A must be exposed in the holo-TFIID complex. To assess the functional significance of this interaction, we established an in vitro transcription system responsive to the E1A activation domain. The addition of excess E1A to this system inhibits (squelches) both E1A-dependent and E1A-independent transcription by sequestering a target factor required for E1A activation. From among the component activities that collectively reconstitute E1A-responsive transcription in this system, holo-TFIID alone is singularly capable of reversing the inhibition of transcription mediated by excess E1A, indicating that holo-TFIID is the direct functional target of the E1A activation domain.
已有研究表明,几种调控转录因子的激活结构域在体外可直接与TATA盒结合蛋白(TBP)结合。然而,对于这些相同的激活因子而言,TBP还必须与多种称为TAF的相关多肽相互作用,才能刺激转录。这些发现提出了一个问题,即TBP如何能同时与如此多的蛋白质(激活因子和TAF)相互作用。在此,我们表明腺病毒大E1A蛋白的激活结构域能够特异性且稳定地结合分离出的全酶TFIID,即由TBP和TAF组成的多亚基蛋白复合物。因此,TBP与E1A相互作用的表面在全酶TFIID复合物中必定是暴露的。为了评估这种相互作用的功能意义,我们建立了一个对E1A激活结构域有反应的体外转录系统。向该系统中添加过量的E1A会通过隔离E1A激活所需的一种靶因子来抑制(抑制)E1A依赖性和E1A非依赖性转录。在该系统中共同重建对E1A有反应的转录的各个组成活性中,仅全酶TFIID能够逆转由过量E1A介导的转录抑制,这表明全酶TFIID是E1A激活结构域的直接功能靶标。