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首页> 外文期刊>MBio >Genome-Wide Mapping of Binding Sites Reveals Multiple Biological Functions of the Transcription Factor Cst6p in Saccharomyces cerevisiae
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Genome-Wide Mapping of Binding Sites Reveals Multiple Biological Functions of the Transcription Factor Cst6p in Saccharomyces cerevisiae

机译:结合位点的全基因组定位揭示了转录因子Cst6p在中的多种生物学功能。

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ABSTRACT In the model eukaryote Saccharomyces cerevisiae , the transcription factor Cst6p has been reported to play important roles in several biological processes. However, the genome-wide targets of Cst6p and its physiological functions remain unknown. Here, we mapped the genome-wide binding sites of Cst6p at high resolution. Cst6p binds to the promoter regions of 59 genes with various biological functions when cells are grown on ethanol but hardly binds to the promoter at any gene when cells are grown on glucose. The retarded growth of the CST6 deletion mutant on ethanol is attributed to the markedly decreased expression of NCE103 , encoding a carbonic anhydrase, which is a direct target of Cst6p. The target genes of Cst6p have a large overlap with those of stress-responsive transcription factors, such as Sko1p and Skn7p. In addition, a CST6 deletion mutant growing on ethanol shows hypersensitivity to oxidative stress and ethanol stress, assigning Cst6p as a new member of the stress-responsive transcriptional regulatory network. These results show that mapping of genome-wide binding sites can provide new insights into the function of transcription factors and highlight the highly connected and condition-dependent nature of the transcriptional regulatory network in S.?cerevisiae . IMPORTANCE Transcription factors regulate the activity of various biological processes through binding to specific DNA sequences. Therefore, the determination of binding positions is important for the understanding of the regulatory effects of transcription factors. In the model eukaryote Saccharomyces cerevisiae , the transcription factor Cst6p has been reported to regulate several biological processes, while its genome-wide targets remain unknown. Here, we mapped the genome-wide binding sites of Cst6p at high resolution. We show that the binding of Cst6p to its target promoters is condition dependent and explain the mechanism for the retarded growth of the CST6 deletion mutant on ethanol. Furthermore, we demonstrate that Cst6p is a new member of a stress-responsive transcriptional regulatory network. These results provide deeper understanding of the function of the dynamic transcriptional regulatory network in S.?cerevisiae .
机译:摘要在模型真核酿酒酵母中,据报道转录因子Cst6p在几种生物学过程中起着重要作用。但是,Cst6p的全基因组靶标及其生理功能仍然未知。在这里,我们以高分辨率绘制了Cst6p的全基因组结合位点。当细胞在乙醇上生长时,Cst6p结合具有多种生物学功能的59个基因的启动子区域,而当在葡萄糖上生长时,Cst6p几乎不与任何基因上的启动子结合。 CST6缺失突变体在乙醇上的生长迟缓归因于编码碳酸酐酶的NCE103的表达显着降低,这是Cst6p的直接靶标。 Cst6p的目标基因与应激反应的转录因子,如Sko1p和Skn7p,有很大的重叠。另外,在乙醇上生长的CST6缺失突变体对氧化应激和乙醇胁迫表现出超敏性,从而将Cst6p指定为应激反应转录调控网络的新成员。这些结果表明,全基因组结合位点的定位可以为转录因子的功能提供新的见解,并突出酿酒酵母转录调控网络的高度连接和条件依赖性。重要信息转录因子通过结合特定的DNA序列来调节各种生物过程的活性。因此,结合位置的确定对于理解转录因子的调节作用很重要。在真核生物酿酒酵母模型中,据报道转录因子Cst6p调节几种生物学过程,而其全基因组靶标仍然未知。在这里,我们以高分辨率绘制了Cst6p的全基因组结合位点。我们表明,Cst6p与其目标启动子的结合是条件依赖性的,并解释了CST6缺失突变体在乙醇上的延迟生长机制。此外,我们证明Cst6p是应激反应转录调控网络的新成员。这些结果为酿酒酵母中动态转录调控网络的功能提供了更深的理解。

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