首页> 外文OA文献 >Iron-responsive regulation of the Helicobacter pylori iron-cofactored superoxide dismutase SodB is mediated by Fur.
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Iron-responsive regulation of the Helicobacter pylori iron-cofactored superoxide dismutase SodB is mediated by Fur.

机译:幽门螺杆菌铁辅助超氧化物歧化酶SodB的铁响应调节是由Fur介导的。

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摘要

Maintaining iron homeostasis is a necessity for all living organisms, as free iron augments the generation of reactive oxygen species like superoxide anions, at the risk of subsequent lethal cellular damage. The iron-responsive regulator Fur controls iron metabolism in many bacteria, including the important human pathogen Helicobacter pylori, and thus is directly or indirectly involved in regulation of oxidative stress defense. Here we demonstrate that Fur is a direct regulator of the H. pylori iron-cofactored superoxide dismutase SodB, which is essential for the defense against toxic superoxide radicals. Transcription of the sodB gene was iron induced in H. pylori wild-type strain 26695, resulting in expression of the SodB protein in iron-replete conditions but an absence of expression in iron-restricted conditions. Mutation of the fur gene resulted in constitutive, iron-independent expression of SodB. Recombinant H. pylori Fur protein bound with low affinity to the sodB promoter region, but addition of the iron substitute Mn2+ abolished binding. The operator sequence of the iron-free form of Fur, as identified by DNase I footprinting, was located directly upstream of the sodB gene at positions −5 to −47 from the transcription start site. The direct role of Fur in regulation of the H. pylori sodB gene contrasts with the small-RNA-mediated sodB regulation observed in Escherichia coli. In conclusion, H. pylori Fur is a versatile regulator involved in many pathways essential for gastric colonization, including superoxide stress defense.
机译:维持铁体内平衡是所有活生物体的必要条件,因为游离铁会增加诸如超氧阴离子之类的活性氧的生成,从而有可能导致随后的致命性细胞损伤。具有铁反应性的调节剂Fur控制着许多细菌(包括重要的人类病原体幽门螺杆菌)中的铁代谢,因此直接或间接参与了氧化应激防御的调节。在这里,我们证明了Fur是幽门螺杆菌铁因子超氧化物歧化酶SodB的直接调节剂,它对于防御有毒的超氧化物自由基至关重要。 SodB基因的转录是在幽门螺杆菌野生型菌株26695中铁诱导的,导致SodB蛋白在铁充足的条件下表达,而在铁受限的条件下不表达。 fur基因的突变导致SodB的组成性铁独立表达。重组幽门螺杆菌Fur蛋白以低亲和力结合到sodB启动子区域,但是铁替代物Mn2 +的加入取消了结合。通过DNase I足迹识别,Fur的无铁形式的操纵基因序列直接位于sodB基因的上游,位于转录起始位点-5至-47的位置。 Fur在幽门螺杆菌sodB基因调控中的直接作用与在大肠杆菌中观察到的小RNA介导的sodB调控相反。总之,幽门螺杆菌是一种多功能调节剂,参与胃定植的许多必不可少的途径,包括超氧化物应激防御。

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