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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Specialized Rap1p/Gcr1p Transcriptional Activation Through Gcr1p DNA Contacts Requires Gcr2p, as Does Hyperphosphorylation of Gcr1p
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Specialized Rap1p/Gcr1p Transcriptional Activation Through Gcr1p DNA Contacts Requires Gcr2p, as Does Hyperphosphorylation of Gcr1p

机译:通过Gcr1p DNA接触的专门Rap1p / Gcr1p转录激活需要Gcr2p,Gcr1p的过度磷酸化也需要

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The multifunctional regulatory factor Rap1p of Saccharomyces cerevisiae accomplishes one of its tasks, transcriptional activation, by complexing with Gcr1p. An unusual feature of this heteromeric complex is its apparent capacity to contact simultaneously two adjacent DNA elements (UASRPG and the CT box, bound specifically by Rap1p and Gcr1p, respectively). The complex can activate transcription through isolated UASRPG but not CT elements. In promoters that contain both DNA signals its activity is enhanced, provided the helical spacing between the two elements is appropriate; this suggests that at least transient DNA loop formation is involved. We show here that this CT box-dependent augmentation of Rap1p/Gcr1p activation requires the presence of a third protein Gcr2p; the Gcr2– growth defect appears to result from a genome-wide loss of the CT box effect. Interestingly, a hyperphosphorylated form of Gcr1p disappears in Δ gcr2 cells but reappears if they harbor a doubly point-mutated GCR1 allele that bypasses the Gcr2– growth defect. Gcr2p therefore appears to induce a conformation change in Gcr1p and/or stimulate its hyperphosphorylation; one or both of these effects can be mimicked in the absence of GCR2 by mutation of GCR1 . This improved view of Rap1p/Gcr1p/Gcr2p function reveals a new aspect of eukaryotic gene regulation: modification of an upstream activator, accompanied by at least transient DNA loop formation, mediates its improved capacity to activate transcription.
机译:酿酒酵母的多功能调节因子Rap1p通过与Gcr1p结合来完成其任务之一,转录激活。这种异聚体复合物的一个不寻常的特征是它具有同时接触两个相邻DNA元件(UASRPG和CT盒,分别由Rap1p和Gcr1p特异性结合)的明显能力。该复合物可以通过隔离的UASRPG激活转录,但不能激活CT元素。如果两个元素之间的螺旋间距合适,则在包含两个DNA信号的启动子中,其活性都会增强。这表明至少涉及瞬时DNA环的形成。我们在这里显示,此CT框依赖的Rap1p / Gcr1p激活的增强需要存在第三种蛋白质Gcr2p。 Gcr2–生长缺陷似乎是由于全基因组CT盒效应的丧失所致。有趣的是,Gcr1p的高磷酸化形式在Δgcr2细胞中消失,但如果它们包含双点突变的GCR1等位基因而绕过Gcr2–生长缺陷,则会重新出现。因此,Gcr2p似乎在Gcr1p中诱导构象变化和/或刺激其超磷酸化。在不存在GCR2的情况下,可以通过GCR1的突变来模仿其中一种或两种作用。 Rap1p / Gcr1p / Gcr2p功能的这种改进的观点揭示了真核基因调控的一个新方面:上游激活剂的修饰,至少伴随着短暂的DNA环形成,介导了其增强的激活转录的能力。

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