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首页> 外文期刊>Archives of Biochemistry and Biophysics >A role for rubredoxin in oxidative stress protection in Desulfovibrio vulgaris: Catalytic electron transfer to rubrerythrin and two-iron superoxide reductase
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A role for rubredoxin in oxidative stress protection in Desulfovibrio vulgaris: Catalytic electron transfer to rubrerythrin and two-iron superoxide reductase

机译:氧化还原酶在寻常型脱硫弧菌中的氧化应激保护中的作用:催化电子转移至红荧素和二铁超氧化物还原酶

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Desulfovibrio vulgaris rubredoxin, which contains a single [Fe(SCYS)(4)] site, is shown to be a catalytically competent electron donor to two enzymes from the same organism, namely, rubrerythrin and two-iron superoxide reductase (a.k.a. rubredoxin oxidoreductase or desulfoferrodoxin). These two enzymes have been implicated in catalytic reduction of hydrogen peroxide and superoxide, respectively, during periods of oxidative stress in D. vulgaris, but their proximal electron donors had not been characterized. We further demonstrate the incorrectness of a previous report that rubredoxin is not an electron donor to the superoxide reductase and describe convenient assays for demonstrating the catalytic competence of all three proteins in their respective functions. Rubrerythrin is shown to be an efficient rubredoxin peroxidase in which the rubedoxin:hydrogen peroxide redox stoichiometry is 2:1 mol:mol. Using spinach ferredoxin-NADP' oxidoreductase (FNR) as an artificial, but proficient, NADPH:rubredoxin reductase, rubredoxin was further found to catalyze rapid and complete reduction of all Fe3+ to Fe2+ in rubrerythrin by NADPH under anaerobic conditions. The combined system, FNR/rubredoxin/rubrerythrin, was shown to function as a catalytically competent NADPH peroxidase. Another small rubredoxin-like D. vulgaris protein, Rd1, could not substitute for rubredoxin as a peroxidase substrate of rubrerythrin. Similarly, D. vulgaris rubredoxin was demonstrated to efficiently catalyze reduction of D. vulgaris twoiron superoxide reductase and, when combined with FNR, to function as an NADPH:superoxide oxidoreductase. We suggest that, during periods of oxidative stress, rubredoxin could divert electron flow from the electron transport chain of D. vulgaris to rubrerythrin and superoxide reductase, thereby simultaneously protecting autoxidizable redox enzymes and lowering intracellular hydrogen peroxide and superoxide levels.
机译:含有单个[Fe(SCYS)(4)]位的寻常型脱硫弧菌Rubredoxin被证明是来自同一生物体的两种酶的催化活性电子供体,即红血球蛋白和双铁超氧化物还原酶(又称为红氧还蛋白氧化还原酶或去硫铁蛋白)。这两种酶分别涉及寻常小球藻的氧化应激期间过氧化氢和超氧化物的催化还原,但尚未鉴定它们的近端电子供体。我们进一步证明了以前的报告,即氧化还原酶不是超氧化物还原酶的电子供体,这是不正确的,并描述了用于证明所有三种蛋白质在其各自功能中的催化能力的简便测定方法。赤藓红素被证明是一种有效的红氧还蛋白过氧化物酶,其中红氧还蛋白:过氧化氢的氧化还原化学计量比为2:1 mol:mol。使用菠菜铁氧还蛋白-NADP'氧化还原酶(FNR)作为人工但精通的NADPH:橡胶氧化还原还原酶,进一步发现在厌氧条件下,橡胶氧化还可以通过NADPH催化将红血球菌素中的所有Fe3 +快速完全还原为Fe2 +。 FNR /红氧还蛋白/红霉素的组合系统已显示出具有催化作用的NADPH过氧化物酶的功能。另一类类似小红氧化还蛋白的小球藻D.蛋白,Rd1不能代替红氧化还蛋白作为红绿素的过氧化物酶底物。相似地,已证明寻常的D. vulgaris rubredoxin可以有效催化寻常的D. vulgaris的二氧化铁超氧化物还原酶,并在与FNR结合时起NADPH:superoxide氧化还原酶的作用。我们建议,在氧化应激期间,红氧还蛋白可以将电子流从寻常的D.电子传输链转移到红血球菌素和超氧化物还原酶,从而同时保护可自氧化的氧化还原酶并降低细胞内过氧化氢和超氧化物水平。

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