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Genetic Interactions Between Nhp6 and Gcn5 With Mot1 and the Ccr4–Not Complex That Regulate Binding of TATA-Binding Protein in Saccharomyces cerevisiae

机译:Nhp6和Gcn5与Mot1和Ccr4的遗传相互作用,而不是调控酿酒酵母中TATA结合蛋白结合的复合物。

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摘要

Our previous work suggests that the Nhp6 HMGB protein stimulates RNA polymerase II transcription via the TATA-binding protein TBP and that Nhp6 functions in the same functional pathway as the Gcn5 histone acetyltransferase. In this report we examine the genetic relationship between Nhp6 and Gcn5 with the Mot1 and Ccr4–Not complexes, both of which have been implicated in regulating DNA binding by TBP. We find that combining either a nhp6ab or a gcn5 mutation with mot1, ccr4, not4, or not5 mutations results in lethality. Combining spt15 point mutations (in TBP) with either mot1 or ccr4 also results in either a growth defect or lethality. Several of these synthetic lethalities can be suppressed by overexpression of TFIIA, TBP, or Nhp6, suggesting that these genes facilitate formation of the TBP–TFIIA–DNA complex. The growth defect of a not5 mutant can be suppressed by a mot1 mutant. HO gene expression is reduced by nhp6ab, gcn5, or mot1 mutations, and the additive decreases in HO mRNA levels in nhp6ab mot1 and gcn5 mot1 strains suggest different modes of action. Chromatin immunoprecipitation experiments show decreased binding of TBP to promoters in mot1 mutants and a further decrease when combined with either nhp6ab or gcn5 mutations.
机译:我们以前的工作表明,Nhp6 HMGB蛋白通过TATA结合蛋白TBP刺激RNA聚合酶II转录,并且Nhp6在与Gcn5组蛋白乙酰转移酶相同的功能途径中起作用。在本报告中,我们研究了Nhp6和Gcn5与Mot1和Ccr4–Not复合物之间的遗传关系,这两者都涉及通过TBP调节DNA结合。我们发现将nhp6ab或gcn5突变与mot1,ccr4,not4或not5突变结合会导致致死性。将spt15点突变(在TBP中)与mot1或ccr4结合使用也会导致生长缺陷或致死性。 TFIIA,TBP或Nhp6的过表达可以抑制其中几种合成杀伤力,这表明这些基因促进了TBP-TFIIA-DNA复合物的形成。 not5突变体的生长缺陷可以被mot1突变体抑制。 HO基因表达会因nhp6ab,gcn5或mot1突变而降低,nhp6ab mot1和gcn5 mot1菌株HO mRNA水平的累加性下降提示不同的作用方式。染色质免疫沉淀实验显示,在mot1突变体中,TBP与启动子的结合减少,与nhp6ab或gcn5突变体结合时,进一步降低。

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