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首页> 外文期刊>Journal of bacteriology >Localization of upstream sequence elements required for nitrate and anaerobic induction of fdn (formate dehydrogenase-N) operon expression in Escherichia coli K-12.
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Localization of upstream sequence elements required for nitrate and anaerobic induction of fdn (formate dehydrogenase-N) operon expression in Escherichia coli K-12.

机译:硝酸盐和厌氧诱导fdn(甲酸脱氢酶-N)操纵子表达在大肠杆菌K-12中所需的上游序列元件的定位。

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Two transcriptional activators, the FNR and NARL proteins, are required for induction of the fdnGHI operon, encoding Escherichia coli formate dehydrogenase-N. The FNR protein is required for anaerobic expression, while the NARL protein mediates nitrate induction. We used primer extension to locate the transcription initiation site 29 nucleotides upstream of the fdnG translation initiation codon. Expression assays with single-copy phi (fdnG-lacZ) gene fusions containing various deletions in the fdn 5'-regulatory region delimited three distinct cis-acting elements. One site, which is located at approximately -110, was required for nitrate induction. Two other sites share sequence similarity with the FNR protein binding site core consensus. The first site, centered at -42.5, was required for anaerobic induction. We used site-specific mutagenesis to change this putative FNR protein binding site into the CRP protein binding site core consensus. This change caused the fdn operon to be expressed aerobically, subject to CRP protein control. On the other hand, converting this putative FNR protein binding site into the FNR protein binding site core consensus resulted in elevated anaerobic induction of the fdn operon and also caused weak aerobic expression. The other putative FNR protein binding site, centered at -97.5, was not involved in anaerobic induction. It might play a negative role in fdn operon expression during anaerobic growth in the absence of nitrate.
机译:编码fdnGHI操纵子需要两个转录激活子,即FNR和NARL蛋白,该操纵子编码大肠杆菌甲酸盐脱氢酶-N。 FNR蛋白是厌氧表达所必需的,而NARL蛋白则介导硝酸盐的诱导。我们使用引物延伸将转录起始位点定位在fdnG翻译起始密码子上游29个核苷酸处。使用单拷贝phi(fdnG-lacZ)基因融合体(在fdn 5'调节区中包含各种缺失)进行表达测定,可界定三个不同的顺式作用元件。感应硝酸盐需要一个位置,大约在-110。另外两个位点与FNR蛋白结合位点核心共有序列具有序列相似性。厌氧诱导需要以-42.5为中心的第一个位点。我们使用位点特异性诱变将这种假定的FNR蛋白结合位点更改为CRP蛋白结合位点核心共识。这种变化导致fdn操纵子需氧表达,受CRP蛋白控制。另一方面,将该推定的FNR蛋白结合位点转换为FNR蛋白结合位点核心共有序列导致fdn操纵子的厌氧诱导性升高,并且还引起弱的需氧表达。另一个假定的FNR蛋白结合位点位于-97.5,不参与厌氧诱导。在没有硝酸盐的情况下,厌氧生长过程中它可能在fdn操纵子表达中起负作用。

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