首页> 外文期刊>Nucleic Acids Research >TOR-dependent reduction in the expression level of Rrn3p lowers the activity of the yeast RNA Pol I machinery, but does not account for the strong inhibition of rRNA production.
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TOR-dependent reduction in the expression level of Rrn3p lowers the activity of the yeast RNA Pol I machinery, but does not account for the strong inhibition of rRNA production.

机译:Rrn3p表达水平的TOR依赖性降低会降低酵母RNA Pol I机制的活性,但不能解释对rRNA产生的强烈抑制作用。

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摘要

Ribosome biogenesis is tightly linked to cellular growth. A crucial step in the regulation of ribosomal RNA (rRNA) gene transcription is the formation of the complex between RNA polymerase I (Pol I) and the Pol I-dependent transcription factor Rrn3p. We found that TOR inactivation leads to proteasome-dependent degradation of Rrn3p and a strong reduction in initiation competent Pol I-Rrn3p complexes affecting yeast rRNA gene transcription. Using a mutant expressing non-degradable Rrn3p or a strain in which defined endogenous Rrn3p levels can be adjusted by the Tet-off system, we can demonstrate that Rrn3p levels influence the number of Pol I-Rrn3p complexes and consequently rRNA gene transcription. However, our analysis reveals that the dramatic reduction of rRNA synthesis in the immediate cellular response to impaired TOR signalling cannot be explained by the simple down-regulation of Rrn3p and Pol I-Rrn3p levels.
机译:核糖体的生物发生与细胞生长紧密相关。调节核糖体RNA(rRNA)基因转录的关键步骤是RNA聚合酶I(Pol I)和Pol I依赖性转录因子Rrn3p之间形成复合物。我们发现TOR失活导致蛋白酶体依赖的Rrn3p降解和影响酵母rRNA基因转录的起始感受态Pol I-Rrn3p复合物的强烈降低。使用表达不可降解的Rrn3p的突变体或可以通过Tet-off系统调节定义的内源性Rrn3p水平的菌株,我们可以证明Rrn3p水平影响Pol I-Rrn3p复合体的数量,进而影响rRNA基因的转录。但是,我们的分析表明,对TOR信号转导的直接细胞反应中rRNA合成的急剧减少无法通过简单下调Rrn3p和Pol I-Rrn3p水平来解释。

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