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Function of TFIIIC, RNA polymerase III initiation factor, in activation and repression of tRNA gene transcription

机译:TFIIIC,RNA聚合酶III起始因子,在激活和抑制tRNA基因转录中的功能

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Transcription of transfer RNA genes by RNA polymerase III (Pol III) is controlled by general factors, TFIIIB and TFIIIC, and a negative regulator, Maf1. Here we report the interplay between TFIIIC and Maf1 in controlling Pol III activity upon the physiological switch of yeast from fermentation to respiration. TFIIIC directly competes with Pol III for chromatin occupancy as demonstrated by inversely correlated tDNA binding. The association of TFIIIC with tDNA was stronger under unfavorable respiratory conditions and in the presence of Maf1. Induction of tDNA transcription by glucose-activated protein kinase A (PKA) was correlated with the down-regulation of TFIIIC occupancy on tDNA. The conditions that activate the PKA signaling pathway promoted the binding of TFIIIB subunits, Brf1 and Bdp1, with tDNA, but decreased their interaction with TFIIIC. Association of Brf1 and Bdp1 with TFIIIC was much stronger under repressive conditions, potentially restricting TFIIIB recruitment to tDNA and preventing Pol III recruitment. Altogether, we propose a model in which, depending on growth conditions, TFIIIC promotes activation or repression of tDNA transcription.
机译:RNA聚合酶III(Pol III)对转移RNA基因的转录受一般因素TFIIIB和TFIIIC以及负调控子Maf1的控制。在这里,我们报告了在酵母从发酵到呼吸的生理转换后,TFIIIC和Maf1在控制Pol III活性方面的相互作用。 TFIIIC直接与Pol III竞争染色质的占有率,这通过反相关的tDNA结合证明。在不利的呼吸条件下和存在Maf1的情况下,TFIIIC与tDNA的关联更强。葡萄糖激活蛋白激酶A(PKA)诱导tDNA转录与tDNA上TFIIIC占用的下调有关。激活PKA信号通路的条件促进了TFIIIB亚基Brf1和Bdp1与tDNA的结合,但降低了它们与TFIIIC的相互作用。在抑制条件下,Brf1和Bdp1与TFIIIC的结合要强得多,可能将TFIIIB募集限制为tDNA并阻止Pol III募集。总之,我们提出了一个模型,其中,根据生长条件,TFIIIC促进tDNA转录的激活或抑制。

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