Kobayashi N, Boyer T G, Berk A J
Molecular Biology Institute, University of California, Los Angeles 90024-1570, USA.
Mol Cell Biol. 1995 Nov;15(11):6465-73. doi: 10.1128/MCB.15.11.6465.
TFIIA is a general transcription factor that interacts with the TFIID-promoter complex required for transcription initiation by RNA polymerase II. Two lines of evidence suggest that TFIIA is directly involved in the mechanism by which some activators stimulate transcription. First, binding of TFIIA to a TFIID-promoter complex is a rate-limiting step that is enhanced by transcriptional activators GAL4-AH and Zta. Second, recombinant TFIIA greatly enhances activator-dependent transcription. In this study, we found that the activation domains of Zta and VP16 bind directly to TFIIA. Both Zta and VP16 stimulated rapid assembly of a stable TFIID-TFIIA complex on promoter DNA. Analysis of deletion derivatives of the VP16 activation domain indicated that the ability to bind to TFIIA correlates with the ability to enhance TFIID-TFIIA-promoter ternary complex assembly. Thus, we propose that a class of activators stimulate transcription initiation through direct interactions with both TFIIA and TFIID, which stimulate the assembly of an activated TFIIA-TFIID-promoter complex.
TFIIA是一种通用转录因子,它与RNA聚合酶II转录起始所需的TFIID-启动子复合物相互作用。有两条证据表明TFIIA直接参与了某些激活因子刺激转录的机制。首先,TFIIA与TFIID-启动子复合物的结合是一个限速步骤,转录激活因子GAL4-AH和Zta可增强这一步骤。其次,重组TFIIA可极大地增强依赖激活因子的转录。在本研究中,我们发现Zta和VP16的激活结构域直接与TFIIA结合。Zta和VP16都能刺激在启动子DNA上快速组装稳定的TFIID-TFIIA复合物。对VP16激活结构域缺失衍生物的分析表明,与TFIIA结合的能力与增强TFIID-TFIIA-启动子三元复合物组装的能力相关。因此,我们提出一类激活因子通过与TFIIA和TFIID直接相互作用来刺激转录起始,这会刺激组装活化的TFIIA-TFIID-启动子复合物。