首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >Intermolecular electron transfer in two-iron superoxide reductase: a putative role for the desulforedoxin center as an electron donor to the iron active site
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Intermolecular electron transfer in two-iron superoxide reductase: a putative role for the desulforedoxin center as an electron donor to the iron active site

机译:两铁超氧化物还原酶中的分子间电子转移:脱硫毒素中心作为铁活性位点的电子供体的假定作用

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摘要

Superoxide reductase (SOR) is a superoxide detoxification system present in some microorganisms. Its active site consists of an unusual mononuclear iron center with an FeN4S1 coordination which catalyzes the one-electron reduction of superoxide to form hydrogen peroxide. Different classes of SORs have been described depending on the presence of an additional rubredoxin-like, desulforedoxin iron center, whose function has remained unknown until now. In this work, we investigated the mechanism of the reduction of the SOR iron active site using the NADPH:flavodoxin oxidoreductase from Escherichia coli, which was previously shown to efficiently transfer electrons to the Desulfoarculus baarsii SOR. When present, the additional rubredoxin-like iron center could function as an electronic relay between cellular reductases and the iron active site for superoxide reduction. This electron transfer was mainly intermolecular, between the rubredoxin-like iron center of one SOR and the iron active site of another SOR. These data provide the first experimental evidence for a possible role of the rubredoxin-like iron center in the superoxide detoxifying activity of SOR.
机译:超氧化物还原酶(SOR)是某些微生物中存在的超氧化物解毒系统。它的活性位点由具有FeN4S1配位的不寻常的单核铁中心组成,该中心催化过氧化物的单电子还原形成过氧化氢。根据是否存在另外一个类似氧化还原酶样的脱硫前毒素铁中心,已经描述了不同类型的SOR,至今仍不知道其功能。在这项工作中,我们研究了使用来自大肠杆菌的NADPH:flavodoxin氧化还原酶还原SOR铁活性位点的机理,该酶先前已被证明可以有效地将电子转移至baarsii SOR。当存在时,额外的类似红氧还蛋白的铁中心可以充当细胞还原酶和铁活性位点之间的电子中继,以还原超氧化物。这种电子转移主要是在一个SOR的类氧化还原铁样铁中心和另一个SOR的铁活性位点之间进行分子间转移。这些数据提供了第一个实验证据,表明类氧化还原蛋白的铁中心可能在SOR的超氧化物解毒活性中发挥作用。

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