首页> 外文期刊>Molecular Microbiology >The Loz1 transcription factor from Schizosaccharomyces pombe Schizosaccharomyces pombe binds to Loz1 response elements and represses gene expression when zinc is in excess
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The Loz1 transcription factor from Schizosaccharomyces pombe Schizosaccharomyces pombe binds to Loz1 response elements and represses gene expression when zinc is in excess

机译:来自Schizosaccharomyces Pombe Schizosaccharomyces Pombe的LOZ1转录因子与LOZ1响应元素结合,并在锌过量时抑制基因表达

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Summary In Schizosaccharomyces pombe, the expression of the zrt1 zinc uptake gene is tightly regulated by zinc status. When intracellular zinc levels are low, zrt1 is highly expressed. However, when zinc levels are high, transcription of zrt1 is blocked in a manner that is dependent upon the transcription factor Loz1. To gain additional insight into the mechanism by which Loz1 inhibits gene expression in high zinc, we used RNA‐seq to identify Loz1‐regulated genes, and ChIP‐seq to analyze the recruitment of Loz1 to target gene promoters. We find that Loz1 is recruited to the promoters of 27 genes that are also repressed in high zinc in a Loz1‐dependent manner. We also find that the recruitment of Loz1 to the majority of target gene promoters is dependent upon zinc and the motif 5?‐CGN(A/C)GATCNTY‐3?, which we have named the Loz1 response element (LRE). Using reporter assays, we show that LREs are both required and sufficient for Loz1‐mediated gene repression, and that the level of gene repression is dependent upon the number and sequence of LREs. Our results elucidate the Loz1 regulon in fission yeast and provide new insight into how eukaryotic cells are able to respond to changes in zinc availability in the environment.
机译:发明概述在Schizosaccharomyces Pombe中,Zrt1锌吸收基因的表达通过锌状态紧密调节。当细胞内锌水平低时,ZRT1高度表达。然而,当锌水平很高时,以取决于转录因子LOZ1的方式封闭ZRT1的转录。为了获得额外的深入了解LOZ1抑制高锌中基因表达的机制,我们使用RNA-SEQ鉴定LOZ1调节基因,芯片-SEQ分析LOZ1靶向基因启动子的募集。我们发现LOZ1被募集到27个基因的启动子,这些基因也以LOZ1依赖的方式在高锌中被压抑。我们还发现,LOZ1募集到大多数靶基因启动子依赖于锌和基序5〜-cgn(a / c)gatcnty-3?,我们已经命名为LOZ1响应元素(LRE)。使用报告分析,我们表明LRE都需要且足以用于LOZ1介导的基因抑制,并且基因抑制水平取决于LRE的数量和序列。我们的结果阐明了裂变酵母中的LOZ1调节件,并提供了新的洞察真核细胞如何应对环境中锌可用性的变化。

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  • 来源
    《Molecular Microbiology》 |2019年第6期|共17页
  • 作者单位

    Department of Molecular GeneticsThe Ohio State UniversityColumbus OH 43210 USA;

    Department of Human NutritionThe Ohio State UniversityColumbus OH 43210 USA;

    Department of Human NutritionThe Ohio State UniversityColumbus OH 43210 USA;

    Department of Chemistry and BiochemistryThe Ohio State UniversityColumbus OH 43210 USA;

    Department of Chemistry and BiochemistryThe Ohio State UniversityColumbus OH 43210 USA;

    Department of Molecular GeneticsThe Ohio State UniversityColumbus OH 43210 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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