Martinez E, Ge H, Tao Y, Yuan C X, Palhan V, Roeder R G
Laboratory of Biochemistry and Molecular Biology, The Rockefeller University, New York, New York 10021, USA.
Mol Cell Biol. 1998 Nov;18(11):6571-83. doi: 10.1128/MCB.18.11.6571.
TATA-binding protein-associated factors (TAFIIs) within TFIID control differential gene transcription through interactions with both activators and core promoter elements. In particular, TAFII150 contributes to initiator-dependent transcription through an unknown mechanism. Here, we address whether TAFIIs within TFIID are sufficient, in conjunction with highly purified general transcription factors (GTFs), for differential core promoter-dependent transcription by RNA polymerase II and whether additional cofactors are required. We identify the human homologue of Drosophila TAFII150 through cognate cDNA cloning and show that it is a tightly associated component of human TFIID. More importantly, we demonstrate that the human TAFII150-containing TFIID complex is not sufficient, in the context of all purified GTFs and RNA polymerase II, to mediate transcription synergism between TATA and initiator elements and initiator-directed transcription from a TAFII-dependent TATA-less promoter. Therefore, TAFII-promoter interactions are not sufficient for the productive core promoter-selective functions of TFIID. Consistent with this finding, we have partially purified novel cofactor activities (TICs) that potentiate the TAFII-mediated synergism between TATA and initiator elements (TIC-1) and TAFII-dependent transcription from TATA-less promoters (TIC-2 and -3). Furthermore, we demonstrate an essential function for TFIIA in TIC- and TAFII-dependent basal transcription from a TATA-less promoter. Our results reveal a parallel between the basal transcription activity of TAFIIs through core promoter elements and TAFII-dependent activator function.
TFIID中的TATA结合蛋白相关因子(TAFIIs)通过与激活因子和核心启动子元件相互作用来控制差异基因转录。特别是,TAFII150通过一种未知机制促进依赖起始子的转录。在此,我们探讨TFIID中的TAFIIs与高度纯化的通用转录因子(GTFs)结合时,是否足以实现RNA聚合酶II依赖的差异核心启动子转录,以及是否需要其他辅助因子。我们通过同源cDNA克隆鉴定了果蝇TAFII150的人类同源物,并表明它是人类TFIID紧密结合的组分。更重要的是,我们证明,在所有纯化的GTFs和RNA聚合酶II的背景下,含人类TAFII150的TFIID复合物不足以介导TATA和起始子元件之间的转录协同作用,也不足以介导从TAFII依赖的无TATA启动子进行的起始子定向转录。因此,TAFII - 启动子相互作用不足以实现TFIID有成效的核心启动子选择性功能。与这一发现一致,我们部分纯化了新型辅助因子活性(TICs),它们增强了TAFII介导的TATA和起始子元件之间的协同作用(TIC - 1)以及从无TATA启动子进行的TAFII依赖转录(TIC - 2和 - 3)。此外,我们证明了TFIIA在从无TATA启动子进行的TIC和TAFII依赖的基础转录中具有重要功能。我们的结果揭示了TAFIIs通过核心启动子元件的基础转录活性与TAFII依赖的激活因子功能之间的相似之处。