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首页> 外文期刊>Molecular Microbiology >Oxygen regulation of the Escherichia coli cytochrome d oxidase (cydAB) operon: roles of multiple promoters and the Fnr-1 and Fnr-2 binding sites
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Oxygen regulation of the Escherichia coli cytochrome d oxidase (cydAB) operon: roles of multiple promoters and the Fnr-1 and Fnr-2 binding sites

机译:大肠杆菌细胞色素D氧化酶(cydAB)操纵子的氧调节:多个启动子和Fnr-1和Fnr-2结合位点的作用

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The Escherichia coil cydAB operon encodes the high-affinity terminal oxidase of the oxygen respiratory chain, cytochrome d oxidase. The sensor-regulator pair, ArcB-ArcA, is responsible for the microaerobic activation of the cydAB operon, whereas the anaerobic regulator Fnr represses its expression in the absence of oxygen. Fnr binds in vitro at two sites within the cydAB promoter element. To discern whether these two regions have an in vivo function in the anaerobic regulation of cydAB, the Fnr-binding motifs were mutagenized individually and in combination. The effects of these mutations on in vivo gene expression were determined by lac fusion and primer extension analysis. Our results show that the Fnr-2 site is critical for Fnr-mediated anaerobic repression of the two main cydAB promoters, P1 and P2. In contrast, the Fnr-1 site has an auxiliary role in the anaerobic repression of pi, but not of P2. Transcription from P1 did not affect ArcA-mediated activation or Fnr-mediated repression of P2, indicating that oxygen regulation is exerted on both promoters in an independent fashion. In addition, three new promoters were identified in the cydAB control region, and the 5' ends of the corresponding transcripts were mapped. Two of these promoters, designated P3 and P4, are co-ordinately regulated with P1 and P2 in response to oxygen, ArcA and Fnr. The P5 promoter is not Fnr regulated and is only weakly activated by ArcA. The contribution of these three additional promoters to the overall cydAB expression is most relevant under aerobic conditions. Our results suggest a unique repression model, in which one Fnr dimer bound to one single site (Fnr-P) is sufficient to downregulate transcription from four cydAB promoters. In conclusion, transcription of the cydAB operon is driven by a complex regulatory element containing at least five promoters that act In unison to provide adequate oxygen control of gene expression. [References: 43]
机译:大肠杆菌cydAB操纵子编码氧气呼吸链的高亲和力末端氧化酶,细胞色素d氧化酶。传感器调节剂对ArcB-ArcA负责cydAB操纵子的微有氧活化,而厌氧调节剂Fnr在无氧条件下抑制其表达。 Fnr在cydAB启动子元件内的两个位点体外结合。为了辨别这两个区域在cydAB的厌氧调节中是否具有体内功能,对Fnr结合基序进行了单独诱变和联合诱变。这些突变对体内基因表达的影响通过lac融合和引物延伸分析来确定。我们的结果表明,Fnr-2位点对于Fnr介导的两个主要cydAB启动子P1和P2的厌氧抑制至关重要。相反,Fnr-1位点在pi的厌氧抑制中具有辅助作用,而对P2则无。从P1转录不会影响ArcA介导的激活或Fnr介导的P2抑制,表明氧调节以独立的方式施加在两个启动子上。另外,在cydAB控制区中鉴定了三个新的启动子,并绘制了相应转录本的5'端。这些启动子中的两个,称为P3和P4,响应氧气,ArcA和Fnr与P1和P2协同调节。 P5启动子不受Fnr调控,仅被ArcA弱激活。在有氧条件下,这三个额外的启动子对整个cydAB表达的贡献最为相关。我们的结果提示了一种独特的抑制模型,其中一个Fnr二聚体与一个单一位点结合(Fnr-P)足以下调来自cydAB 4个启动子的转录。总之,cydAB操纵子的转录是由复杂的调控元件驱动的,该调控元件包含至少五个启动子,这些启动子共同作用以提供足够的氧控制基因表达。 [参考:43]

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