首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of Transcriptional Regulation of Shewanella frigidimarina Fe(III)-Induced Flavocytochrome c Reveals a Novel Iron-Responsive Gene Regulation System
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Characterization of Transcriptional Regulation of Shewanella frigidimarina Fe(III)-Induced Flavocytochrome c Reveals a Novel Iron-Responsive Gene Regulation System

机译:弗里希氏乳杆菌铁(III)诱导的黄细胞色素c转录调控的表征揭示了一种新型的铁响应基因调控系统。

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摘要

The bacterium Shewanella frigidimarina can grow anaerobically by utilizing Fe(III) as a respiratory electron acceptor. This results in the synthesis of a number of periplasmic c-type cytochromes, which are absent when the organism is grown in the absence of added Fe(III). One cytochrome, IfcA, is synthesized when Fe(III) is present as the sole respiratory electron acceptor or when it is present in combination with oxygen, fumarate, or nitrate. The ifcA gene was thus selected for a study of iron-responsive gene regulation of respiratory proteins in S. frigidimarina. The monocistronic ifcA gene clusters with two other monocistronic genes, ifcO, encoding a putative outer membrane porin, and ifcR, encoding a putative transcriptional regulator of the LysR superfamily. Analysis of transcription of all three genes under a range of growth conditions in the wild type and an ifcR insertion mutant and analysis of a strain that constitutively expresses ifcR revealed that iron regulation is exerted at the level of ifcR transcription. In the presence of Fe(III) IfcR is synthesized and acts positively to regulate expression of ifcO and ifcA. Control of Fe(III) respiration by this novel regulatory system differs markedly from Fur-mediated regulation of iron assimilation, in which Fur serves as an Fe(II)-activated repressor.
机译:通过利用Fe(III)作为呼吸电子受体,弗里希维纳希瓦氏菌可以厌氧生长。这导致了许多周质c型细胞色素的合成,当有机体在没有添加Fe(III)的情况下生长时,这些色素就不存在。当Fe(III)作为唯一的呼吸电子受体存在或与氧气,富马酸盐或硝酸盐组合存在时,会合成一种细胞色素IfcA。因此,选择了ifcA基因用于研究弗氏链球菌中呼吸蛋白的铁反应性基因调控。单顺反子ifcA基因与其他两个单顺反子基因,即编码假定的外膜孔蛋白的ifcO和编码LysR超家族的假定的转录调节子的ifcR聚集在一起。在野生型和ifcR插入突变体的一系列生长条件下,对所有三个基因的转录进行分析,并对组成型表达ifcR的菌株进行分析,发现铁调节作用于ifcR转录水平。在Fe(III)存在的情况下,IfcR被合成并起积极作用来调节ifcO和ifcA的表达。通过这种新颖的调节系统控制Fe(III)的呼吸与Fur介导的铁同化的调节显着不同,在Fur中,Fur作为Fe(II)激活的阻遏物。

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