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首页> 外文期刊>The Biochemical Journal >Regulatory factors controlling transcription of Saccharomyces cerevisiae IXR1 by oxygen levels: a model of transcriptional adaptation from aerobiosis to hypoxia implicating ROX1 and IXR1 cross-regulation.
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Regulatory factors controlling transcription of Saccharomyces cerevisiae IXR1 by oxygen levels: a model of transcriptional adaptation from aerobiosis to hypoxia implicating ROX1 and IXR1 cross-regulation.

机译:通过氧水平控制酿酒酵母IXR1转录的调控因子:从需氧量到低氧的转录适应模型,涉及ROX1和IXR1的交叉调控。

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Ixr1p from Saccharomyces cerevisiae has been previously studied because it binds to DNA containing intrastrand cross-links formed by the anticancer drug cisplatin. Ixr1p is also a transcriptional regulator of anaerobic/hypoxic genes, such as SRP1/TIR1, which encodes a stress-response cell wall manoprotein, and COX5B, which encodes the Vb subunit of the mitochondrial complex cytochrome c oxidase. However, factors controlling IXR1 expression remained unexplored. In the present study we show that IXR1 mRNA levels are controlled by oxygen availability and increase during hypoxia. In aerobiosis, low levels of IXR1 expression are maintained by Rox1p repression through the general co-repressor complex Tup1-Ssn6. Ixr1p itself is necessary for full IXR1 expression under hypoxic conditions. Deletion analyses have identified the region in the IXR1 promoter responsible for this positive auto-control (nucleotides -557 to -376). EMSA (electrophoretic mobility-shift assay) and ChIP (chromatin immunoprecipitation) assays show that Ixr1p binds to the IXR1 promoter both in vitro and in vivo. Ixr1p is also required for hypoxic repression of ROX1 and binds to its promoter. UPC2 deletion has opposite effects on IXR1 and ROX1 transcription during hypoxia. Ixr1p is also necessary for resistance to oxidative stress generated by H2O2. IXR1 expression is moderately activated by H2O2 and this induction is Yap1p-dependent. A model of IXR1 regulation as a relay for sensing different signals related to change in oxygen availability is proposed. In this model, transcriptional adaptation from aerobiosis to hypoxia depends on ROX1 and IXR1 cross-regulation.
机译:先前已经研究了来自酿酒酵母的Ixr1p,因为它与包含由抗癌药顺铂形成的链内交联的DNA结合。 Ixr1p还是厌氧/低氧基因的转录调节因子,例如SRP1 / TIR1和COX5B,SRP1 / TIR1编码应激反应的细胞壁操纵蛋白,COX5B编码线粒体复合物细胞色素C氧化酶的Vb亚基。但是,控制IXR1表达的因素仍待探索。在本研究中,我们表明IXR1 mRNA的水平受氧的利用并在缺氧时增加。在好氧运动中,通过一般的共阻遏物复合物Tup1-Ssn6通过Rox1p阻遏维持低水平的IXR1表达。 Ixr1p本身对于缺氧条件下完整IXR1表达是必需的。缺失分析已经鉴定出IXR1启动子中负责该阳性自动控制的区域(核苷酸-557至-376)。 EMSA(电泳迁移率迁移测定)和ChIP(染色质免疫沉淀)测定表明,Ixr1p在体外和体内均与IXR1启动子结合。 Ixr1p对于ROX1的低氧抑制也是必需的,并与其启动子结合。在缺氧期间,UPC2缺失对IXR1和ROX1转录具有相反的影响。 Ixr1p对于抵抗H2O2产生的氧化应力也是必需的。 IXR1表达被H2O2适度激活,这种诱导是Yap1p依赖性的。提出了一种作为继电器的IXR1调节模型,用于感测与氧气可用性变化相关的不同信号。在此模型中,从需氧量到低氧的转录适应取决于ROX1和IXR1交叉调控。

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