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Analysis of Gal4-directed transcription activation using Tra1 mutants selectively defective for interaction with Gal4

机译:使用Tra1突变体分析Gal4指导的转录激活,选择性缺陷与Gal4相互作用

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摘要

Promoter-specific transcriptional activators (activators) stimulate transcription through direct interactions with one or more components of the transcription machinery, termed the \u22target.\u22 The identification of direct in vivo targets of activators has been a major challenge. Previous studies have provided evidence that the Tra1 subunit of the yeast SAGA (Spt-Ada-Gcn5-acetyltransferase) complex is the target of the yeast activator Gal4. However, several other general transcription factors, in particular the mediator complex, have also been implicated as Gal4 targets. Here we perform a large-scale genetic screen to derive and characterize tra1 alleles that are selectively defective for interaction with Gal4 in vivo [Gal4 interaction defective (GID) mutants]. In contrast to WT Tra1, Tra1 GID mutants are not recruited by Gal4 to the promoter and cannot support Gal4-directed transcription, demonstrating the essentiality of the Gal4-Tra1 interaction. In yeast strains expressing a Tra1 GID mutant, binding of Gal4 to the promoter is unexpectedly also diminished, indicating that Gal4 and Tra1 bind cooperatively. Consistent with cooperative binding, we demonstrate that the Gal4-Tra1 interaction occurs predominantly on the promoter and not off DNA. Finally, we show that although Tra1 is targeted by other activators, these interactions are unaffected by GID mutations, revealing an unanticipated specificity of the Gal4-Tra1 interaction.
机译:启动子特异性转录激活剂(激活剂)通过与转录机制的一个或多个组成部分的直接相互作用来刺激转录,这称为“ u22target”。激活剂的直接体内靶标的鉴定一直是一项重大挑战。先前的研究提供了证据,表明酵母SAGA(Spt-Ada-Gcn5-乙酰基转移酶)复合物的Tra1亚基是酵母激活剂Gal4的目标。但是,还暗示了一些其他通用转录因子,尤其是介体复合物,作为Gal4靶标。在这里,我们进行了大规模的遗传筛选,以推导和表征在体内与Gal4相互作用[Gal4相互作用缺陷(GID)突变体]有选择性缺陷的tra1等位基因。与WT Tra1相比,Gal4不会将Tra1 GID突变体募集到启动子,并且不能支持Gal4定向的转录,这证明了Gal4-Tra1相互作用的必要性。在表达Tra1 GID突变体的酵母菌株中,Gal4与启动子的结合也出乎意料地减少,表明Gal4和Tra1协同结合。与合作绑定一致,我们证明Gal4-Tra1相互作用主要发生在启动子上,而不是DNA之外。最后,我们显示,尽管Tra1被其他激活剂靶向,但这些相互作用不受GID突变的影响,从而揭示了Gal4-Tra1相互作用的意外特异性。

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