首页> 美国卫生研究院文献>Eukaryotic Cell >Genomewide Recruitment Analysis of Rpb4 a Subunit of Polymerase II in Saccharomyces cerevisiae Reveals Its Involvement in Transcription Elongation
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Genomewide Recruitment Analysis of Rpb4 a Subunit of Polymerase II in Saccharomyces cerevisiae Reveals Its Involvement in Transcription Elongation

机译:全基因组招聘分析Rpb4酿酒酵母中聚合酶II的一个亚基揭示了其参与转录延伸。

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摘要

The Rpb4/Rpb7 subcomplex of yeast RNA polymerase II (Pol II) has counterparts in all multisubunit RNA polymerases from archaebacteria to higher eukaryotes. The Rpb4/7 subcomplex in Saccharomyces cerevisiae is unique in that it easily dissociates from the core, unlike the case in other organisms. The relative levels of Rpb4 and Rpb7 in yeasts affect the differential gene expression and stress response. Rpb4 is nonessential in S. cerevisiae and affects expression of a small number of genes under normal growth conditions. Here, using a chromatin immunoprecipitation (“ChIP on-chip”) technique, we compared genomewide binding of Rpb4 to that of a core Pol II subunit, Rpb3. Our results showed that in spite of being nonessential for survival, Rpb4 was recruited on coding regions of most transcriptionally active genes, similar to the case with the core Pol II subunit, Rpb3, albeit to a lesser extent. The extent of Rpb4 recruitment increased with increasing gene length. We also observed Pol II lacking Rpb4 to be defective in transcribing long, GC-rich transcription units, suggesting a role for Rpb4 in transcription elongation. This role in transcription elongation was supported by the observed 6-azauracil (6AU) sensitivity of the rpb4Δ mutant. Unlike most phenotypes of rpb4Δ, the 6AU sensitivity of the rpb4Δ strain was not rescued by overexpression of RPB7. This report provides the first instance of a distinct role for Rpb4 in transcription, which is independent of its interacting partner, Rpb7.
机译:酵母RNA聚合酶II(Pol II)的Rpb4 / Rpb7亚复合体在从古细菌到高级真核生物的所有多亚基RNA聚合酶中都有对应物。酿酒酵母中的Rpb4 / 7亚复合物是独特的,因为它很容易与核心分离,这与其他生物体不同。酵母中Rpb4和Rpb7的相对水平会影响差异基因表达和应激反应。 Rpb4在酿酒酵母中不是必需的,并且会在正常生长条件下影响少数基因的表达。在这里,我们使用染色质免疫沉淀(“芯片上的ChIP”)技术,比较了Rpb4与核心Pol II亚基Rpb3的全基因组结合。我们的结果表明,尽管对生存无关,Rpb4仍在大多数转录活性基因的编码区募集,这与核心Pol II亚基Rpb3的情况相似,尽管程度较小。 Rpb4募集的程度随基因长度的增加而增加。我们还观察到缺乏Rpb4的Pol II在转录长的,富含GC的转录单位方面存在缺陷,表明Rpb4在转录延伸中的作用。观察到的rpb4Δ突变体的6-氮杂嘧啶(6AU)敏感性支持了这种在转录延伸中的作用。与大多数rpb4Δ的表型不同,rpb4Δ菌株的6AU敏感性不能通过RPB7的过表达来挽救。该报告提供了Rpb4在转录中的独特作用的第一个实例,该实例独立于其相互作用的伴侣Rpb7。

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