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Regulation of RNA Polymerase III Transcription Involves SCH9-dependent and SCH9-independent Branches of the Target of Rapamycin (TOR) Pathway

机译:RNA聚合酶III转录调控涉及。 目标的SCH9依赖和SCH9独立的分支 雷帕霉素(TOR)通路

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摘要

Maf1 is a conserved repressor of transcription that functions at the downstream end of multiple nutrient and stress signaling pathways. How these different signaling pathways converge on Maf1 is not known. Previous work in yeast indicates that protein kinase A (PKA) regulates RNA polymerase (pol) III transcription, in part, by phosphorylating multiple sites in Maf1. Here we present additional evidence for this view and show that a parallel nutrient and stress-sensing pathway involving Sch9, an homologous kinase to metazoan S6 kinase, targets Maf1 at a subset of PKA sites. Using ATP analog-sensitive alleles of PKA and Sch9, we find that these two kinases account for the bulk of the phosphorylation on consensus PKA sites in Maf1. Deletion of Sch9 reduces RNA pol III transcription in a Maf1-dependent manner, yet the cells remain susceptible to further repression by rapamycin and other treatments. Because the rapamycin-sensitive kinase activity of the TORC1 complex is necessary for Sch9 function in vivo and in vitro, our results show that transcriptional regulation of RNA pol III and the coordinate control of ribosomal protein genes can be achieved by Sch9-dependent and -independent branches of the target of rapamycin (TOR) signaling pathway.
机译:Maf1是保守的转录阻遏物,在多种营养和胁迫信号通路的下游端起作用。这些不同的信号传导途径如何在Maf1上汇合还是未知的。酵母中的先前工作表明,蛋白激酶A(PKA)部分地通过磷酸化Maf1中的多个位点来调节RNA聚合酶(pol)III的转录。在这里,我们为这种观点提供其他证据,并表明涉及Sch9(后生动物S6激酶的同源激酶)的平行营养和应激传感途径将Paf位点的一个子集中的Maf1作为目标。使用PKA和Sch9的ATP类似物敏感的等位基因,我们发现这两个激酶占了Maf1共有PKA位点磷酸化的大部分。 Sch9的删除以Maf1依赖的方式减少RNA pol III转录,但细胞仍然易于受到雷帕霉素和其他治疗的抑制。由于TORC1复合物的雷帕霉素敏感性激酶活性对于Sch9在体内和体外的功能是必需的,因此我们的结果表明,可以通过Sch9依赖性和非依赖性方式实现RNA pol III的转录调控和核糖体蛋白基因的协调控制。雷帕霉素(TOR)信号通路靶标的分支。

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