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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Transcription factor Reb1 is required for proper transcriptional start site usage at the divergently transcribed TFC6-ESC2 locus in Saccharomyces cerevisiae
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Transcription factor Reb1 is required for proper transcriptional start site usage at the divergently transcribed TFC6-ESC2 locus in Saccharomyces cerevisiae

机译:在酿酒酵母中不同转录的TFC6-ESC2基因座上正确转录起始位点的使用需要转录因子Reb1。

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摘要

Eukaryotic promoters generally contain nucleosome depleted regions near their transcription start sites. In the model organism Saccharomyces cerevisiae, these regions are adjacent to binding sites for general regulatory transcription factors, and the Reb1 protein is commonly bound to promoter DNA near such regions. The yeast TFC6 promoter is a unique RNA polymerase II promoter in that it is autoregulated by its own gene product Tfc6p, which is part of the RNA polymerase III transcription factor complex TFIIIC. We previously demonstrated that mutation of a potential Reb1 binding site adjacent to the TFIIIC binding site in the TFC6 promoter modestly reduces transcript levels, but leads to a severe decrease in Tfc6 protein levels due to an upstream shift in the TFC6 transcription start site. Here we confirm that Reb1p indeed binds to the TFC6 promoter, and is important for proper transcription start site selection and protein expression. Interestingly, loss of Reb1p association at this site has a similar effect on the adjacent divergently transcribed ESC2 promoter, resulting in a significant increase of 5'-extended ESC2 transcripts and reduction of Esc2 protein levels. This altered divergent transcription may be the result of changes in nucleosome positioning at this locus in the absence of Reb1p binding. We speculate that an important function of general regulatory factors such as Reb1p is to establish and maintain proper transcription start sites at promoters, and that when binding of such factors is compromised, resulting effects on mRNA translation may be an underappreciated aspect of gene regulation studies. (C) 2016 Elsevier B.V. All rights reserved.
机译:真核启动子通常在其转录起始位点附近包含核小体耗尽的区域。在模型生物酿酒酵母中,这些区域与通用调节转录因子的结合位点相邻,并且Reb1蛋白通常在此类区域附近与启动子DNA结合。酵母TFC6启动子是独特的RNA聚合酶II启动子,因为它受其自身的基因产物Tfc6p自动调节,该产物是RNA聚合酶III转录因子复合物TFIIIC的一部分。我们以前证明,在TFC6启动子中邻近TFIIIC结合位点的潜在Reb1结合位点的突变适度降低了转录水平,但由于TFC6转录起始位点的上游移位,导致Tfc6蛋白水平严重降低。在这里,我们确认Reb1p确实与TFC6启动子结合,并且对于正确的转录起始位点选择和蛋白质表达很重要。有趣的是,在该位点的Reb1p缔合丢失对相邻的不同转录的ESC2启动子具有相似的作用,导致5'延伸的ESC2转录物显着增加,并且Esc2蛋白水平降低。这种变化的发散转录可能是在没有Reb1p结合的情况下该位点处核小体位置变化的结果。我们推测,一般调控因子(如Reb1p)的重要功能是在启动子上建立并维持适当的转录起始位点,并且当此类因子的结合受到损害时,对mRNA翻译的影响可能是基因调控研究中未被重视的方面。 (C)2016 Elsevier B.V.保留所有权利。

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