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The conformation of the transcription factor TFIIB modulates the response to transcriptional activators in vivo

机译:转录因子TFIIB的构象调节体内对转录激活因子的反应

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The general transcription factor TFIIB plays a crucial role in the assembly of the transcriptional preinitiation complex and has also been proposed as a target of transcriptional activator proteins (reviewed in [1]). TFIIB is composed of two domains which are engaged in an intramolecular interaction that is disrupted upon interaction with the activation domain of the Herpesvirus VP16 protein in vitro [2,3], The significance of this event for transcriptional activation is not known, however. The amino-terminal intramolecular interaction domain is the most conserved region of TFIIB and plays a role in transcription start-site selection [4-6]. in addition, we have shown previously that the integrity of this region is required for transcriptional activation in vivo [4], Here, we have defined a charge cluster at the amino terminus of TFIIB that is required for transcriptional activation in vivo. We found that this domain determines the affinity of the TFIIB intramolecular interaction and the ability of TFIIB to interact with a transcriptional activation domain, but not with components of the holoenzyme, Our results suggest that the intramolecular interaction in TFIIB regulates transcriptional activation in vivo. [References: 16]
机译:通用转录因子TFIIB在转录预启动复合体的组装中起着至关重要的作用,并且还被提议作为转录激活蛋白的靶标(在[1]中综述)。 TFIIB由参与分子内相互作用的两个域组成,该分子域相互​​作用在体外与疱疹病毒VP16蛋白的激活域相互作用时被破坏[2,3]。但是,该事件对于转录激活的重要性尚不清楚。氨基末端分子内相互作用结构域是TFIIB最保守的区域,并在转录起始位点选择中起作用[4-6]。此外,我们之前已经证明了该区域的完整性是体内转录激活所必需的[4]。在这里,我们已经定义了TFIIB氨基末端的电荷簇,该电荷簇是体内转录激活所必需的。我们发现,该结构域决定了TFIIB分子内相互作用的亲和力以及TFIIB与转录激活域相互作用的能力,但与全酶的成分没有相互作用。我们的结果表明,TFIIB的分子内相互作用调节体内的转录激活。 [参考:16]

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