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首页> 外文期刊>Nucleic Acids Research >RNA Polymerase I and Fob1 contributions to transcriptional silencing at the yeast rDNA locus
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RNA Polymerase I and Fob1 contributions to transcriptional silencing at the yeast rDNA locus

机译:RNA聚合酶I和Fob1对酵母rDNA位点转录沉默的贡献

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摘要

RNA polymerase II (Pol II)-transcribed genes embedded within the yeast rDNA locus are repressed through a Sir2-dependent process called 'rDNA silencing'. Sir2 is recruited to the rDNA promoter through interactions with RNA polymerase I (Pol I), and to a pair of DNA replication fork block sites (Ter1 and Ter2) through interaction with Fob1. We utilized a reporter gene (mURA3) integrated adjacent to the leftmost rDNA gene to investigate localized Pol I and Fob1 functions in silencing. Silencing was attenuated by loss of Pol I subunits or insertion of an ectopic Pol I terminator within the adjacent rDNA gene. Silencing left of the rDNA array is naturally attenuated by the presence of only one intact Fob1 binding site (Ter2). Repair of the 2nd Fob1 binding site (Ter1) dramatically strengthens silencing such that it is no longer impacted by local Pol I transcription defects. Global loss of Pol I activity, however, negatively affects Fob1 association with the rDNA. Loss of Ter2 almost completely eliminates localized silencing, but is restored by artificially targeting Fob1 or Sir2 as Gal4 DNA binding domain fusions. We conclude that Fob1 and Pol Imake independent contributions to establishment of silencing, though Pol I also reinforces Fob1-dependent silencing.
机译:嵌入酵母rDNA基因座中的RNA聚合酶II(Pol II)转录基因通过称为“ rDNA沉默”的Sir2依赖性过程受到抑制。 Sir2通过与RNA聚合酶I(Pol I)的相互作用被募集到rDNA启动子,并通过与Fob1的相互作用被募集到一对DNA复制叉阻断位点(Ter1和Ter2)。我们利用与最左侧的rDNA基因相邻整合的报告基因(mURA3),来研究沉默中的局部Pol I和Fob1功能。 Pol I亚基的缺失或在邻近rDNA基因中插入异位Pol I终止子可减弱沉默。仅存在一个完整的Fob1结合位点(Ter2),rDNA阵列的左侧沉默会自然减弱。第二Fob1结合位点(Ter1)的修复大大增强了沉默,使其不再受到本地Pol I转录缺陷的影响。但是,Pol I活性的全球丧失对Fob1与rDNA的关联产生负面影响。 Ter2的丢失几乎完全消除了局部沉默,但通过将Fob1或Sir2作为Gal4 DNA结合结构域融合物进行人工靶向而得以恢复。我们得出的结论是,尽管Pol I也增强了Fob1依赖性沉默,但Fob1和Pol I对沉默的建立做出了独立贡献。

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