首页> 美国卫生研究院文献>Journal of Bacteriology >Rubrerythrin from the Hyperthermophilic Archaeon Pyrococcus furiosus Is a Rubredoxin-Dependent Iron-Containing Peroxidase
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Rubrerythrin from the Hyperthermophilic Archaeon Pyrococcus furiosus Is a Rubredoxin-Dependent Iron-Containing Peroxidase

机译:来自嗜热古细菌火球菌的赤藓红素是一种依赖于氧化还原酶的含铁过氧化物酶

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摘要

Rubrerythrin was purified by multistep chromatography under anaerobic, reducing conditions from the hyperthermophilic archaeon Pyrococcus furiosus. It is a homodimer with a molecular mass of 39.2 kDa and contains 2.9 ± 0.2 iron atoms per subunit. The purified protein had peroxidase activity at 85°C using hydrogen peroxide with reduced P. furiosus rubredoxin as the electron donor. The specific activity was 36 μmol of rubredoxin oxidized/min/mg with apparent Km values of 35 and 70 μM for hydrogen peroxide and rubredoxin, respectively. When rubrerythrin was combined with rubredoxin and P. furiosus NADH:rubredoxin oxidoreductase, the complete system used NADH as the electron donor to reduce hydrogen peroxide with a specific activity of 7.0 μmol of H2O2 reduced/min/mg of rubrerythrin at 85°C. Strangely, as-purified (reduced) rubrerythrin precipitated when oxidized by either hydrogen peroxide, air, or ferricyanide. The gene (PF1283) encoding rubrerythrin was expressed in Escherichia coli grown in medium with various metal contents. The purified recombinant proteins each contained approximately three metal atoms/subunit, ranging from 0.4 Fe plus 2.2 Zn to 1.9 Fe plus 1.2 Zn, where the metal content of the protein depended on the metal content of the E. coli growth medium. The peroxidase activities of the recombinant forms were proportional to the iron content. P. furiosus rubrerythrin is the first to be characterized from a hyperthermophile or from an archaeon, and the results are the first demonstration that this protein functions in an NADH-dependent, hydrogen peroxide:rubredoxin oxidoreductase system. Rubrerythrin is proposed to play a role in the recently defined anaerobic detoxification pathway for reactive oxygen species.
机译:在厌氧条件下,通过多步色谱法纯化赤霉素,以减少来自超嗜热古生热球菌的条件。它是均聚物,分子量为39.2 kDa,每个亚基含2.9±0.2铁原子。纯化的蛋白质在85°C的温度下使用过氧化氢和还原的恶性疟原虫rubredoxin作为电子供体,具有过氧化物酶活性。比活性为氧化的氧化还原酶每分钟/ mg 36摩尔,氧化氢和氧化还原酶的表观Km值分别为35和70μM。当将红血球菌素与红血球菌毒素和恶性疟原虫NADH:红氧还蛋白氧化还原酶组合使用时,整个系统在85°C下使用NADH作为电子供体来还原过氧化氢,比活度为7.0μmolH2O2减少/ min / mg红血球菌素。奇怪的是,当被过氧化氢,空气或铁氰化物氧化时,提纯的(还原的)红血球菌素沉淀。在含有多种金属含量的培养基中生长的大肠杆菌中表达了编码红霉素的基因(PF1283)。纯化的重组蛋白各自包含大约三个金属原子/亚基,范围从0.4 Fe加2.2 Zn到1.9 Fe加1.2 Zn,其中蛋白质的金属含量取决于大肠杆菌生长培养基的金属含量。重组形式的过氧化物酶活性与铁含量成正比。激烈体育红腐球菌是第一个以嗜热嗜热菌或古细菌为特征的,结果首次证明了该蛋白质在依赖NADH的过氧化氢:氧化还原酶氧化还原酶系统中起作用。提议在一种新近定义的活性氧厌氧解毒途径中起红花青素的作用。

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