首页> 外文OA文献 >A Transcription Factor Cascade Involving Fep1 and the CCAAT-Binding Factor Php4 Regulates Gene Expression in Response to Iron Deficiency in the Fission Yeast Schizosaccharomyces pombe▿ †
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A Transcription Factor Cascade Involving Fep1 and the CCAAT-Binding Factor Php4 Regulates Gene Expression in Response to Iron Deficiency in the Fission Yeast Schizosaccharomyces pombe▿ †

机译:涉及Fep1和CCAAT结合因子Php4的转录因子级联调节裂变酵母裂殖酵母中铁缺乏反应的基因表达▿†

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摘要

We have identified genes encoding candidate proteins involved in iron storage (pcl1+), the tricarboxylic acid cycle (sdh4+), and iron-sulfur cluster assembly (isa1+) that are negatively regulated in response to iron deprivation. Promoter deletion and site-directed mutagenesis permitted identification of a new cis-regulatory element in the promoter region of the pcl1+ gene. This cis-acting regulatory sequence containing the pentanucleotide sequence CCAAT is responsible for transcriptional repression of pcl1+ under low iron supply conditions. In Schizosaccharomyces pombe, the CCAAT-binding factor is a heteromeric DNA-binding complex that contains three subunits, designated Php2, Php3, and Php5. Inactivation of the php2+ locus negatively affects the transcriptional competency of pcl1+. A fourth subunit, designated Php4, is not essential for the transcriptional activation of target genes under basal and iron-replete conditions. We demonstrate that, in response to iron-limiting conditions, Php4 is required for down-regulation of pcl1+, sdh4+, and isa1+ mRNA levels. In vivo RNase protection studies reveal that the expression of php4+ is negatively regulated by iron and that this regulated expression requires a functional fep1+ gene. The results of these studies reveal that Fep1 represses php4+ expression in response to iron. In contrast, when iron is scarce, Fep1 becomes inactive and php4+ is expressed to act as a regulatory subunit of the CCAAT-binding factor that is required to block pcl1+, sdh4+, and isa1+ gene transcription.
机译:我们已经确定了编码候选蛋白的基因,这些候选蛋白参与铁的存储(pcl1 +),三羧酸循环(sdh4 +)和铁-硫簇装配(isa1 +),这些响应受铁剥夺而受到负调控。启动子缺失和定点诱变允许鉴定pcl1 +基因启动子区域的新的顺式调控元件。含有五核苷酸序列CCAAT的顺式作用调控序列负责在低铁供应条件下pcl1 +的转录抑制。在粟酒裂殖酵母中,CCAAT结合因子是一种异源DNA结合复合物,包含三个亚基,分别称为Php2,Php3和Php5。 php2 +基因座的失活会对pcl1 +的转录能力产生负面影响。在基础和铁充足的条件下,第四个亚基,称为Php4,对于靶基因的转录激活不是必需的。我们证明,响应铁限制条件,Php4是下调pcl1 +,sdh4 +和isa1 + mRNA水平所必需的。体内RNase保护研究表明php4 +的表达受到铁的负调控,并且这种受调控的表达需要功能性fep1 +基因。这些研究的结果表明Fep1抑制铁响应php4 +表达。相反,当铁缺乏时,Fep1变得不活泼,并且php4 +被表达为CCAAT结合因子的调节亚基,这是阻断pcl1 +,sdh4 +和isa1 +基因转录所需的。

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