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Escherichia coli flavohaemoglobin (Hmp) reduces cytochrome c and Fe(III)-hydroxamate K by electron transfer from NADH via FAD: sensitivity of oxidoreductase activity to haem-bound dioxygen

机译:大肠杆菌氟哌莫猴(HMP)通过从NADH通过FAD的电子转移减少细胞色素C和Fe(III) - 羟肟酸碱:氧化还原酶活性对血红素的敏感性

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Escherichia coli flavohaemoglobin (Hmp) reduced purified mitochondrial cytochrome c aerobically in a reaction that was not substantially inhibited by superoxide dismutase, demonstrating that superoxide anion, the product of O2 reduction by Hmp, did not contribute markedly to cytochrome c reduction. Cytochrome c was reduced by Hmp even in the presence of 0.5 mM CO, when the haem B was locked in the ferrous, low-spin state, demonstrating that electron transfer to cytochrome c from NADH was via FAD, not haem. Hmp also reduced the ferrisiderophore complex Fe(III)-hydroxamate K from Rhizobium leguminosarum bv. viciae anaerobically in a CO-insensitive manner, but at low rates and with low affinity for this substrate. The NADH-cytochrome c oxidoreductase activity of Hmp was slightly sensitive to the binding and reduction of O2 at the haem. The Vmax of cytochrome c reduction fell from 7.1 s-1in the presence of 0.5 mM CO to 5.0 s-1in the presence of 100 μM O2with no significant change in Km for cytochrome c (6.8 to 7.3 μM, respectively). O2 at near-micromolar concentrations diminished cytochrome c reduction to a similar extent as did 100 μM O2 Thus, Hmp acts as a reductase of broad specificity, apparently without involvement of electron transfer via the globin-like haem. These data are consistent with the hypothesis that Hmp could act as an intracellular sensor of O2 since, in the absence of O2 electron flux from FAD to other electron acceptors increases. However, the nature of such acceptors in vivo is not known and alternative models for O2 sensing are also considered.
机译:大肠杆菌氟哌莫猴(HMP)在不受超氧化物歧化酶的反应中有氧化地减少了纯化的线粒体细胞色素C,其展示超氧化物阴离子,通过HMP的O2减少的产物,对细胞色素C的还原没有贡献。即使在0.5mm CO的情况下,HMP也通过HMP减少了细胞色素C,当HAEM B被锁定在铁旋旋状态时,证明来自NADH的电子转移到来自NADH的细胞色素C是通过FAD的,而不是哈米。 HMP还减少了来自Remuminosarum BV的甲状腺球瘤复合物Fe(III) - 羟胺k。以共敏感的方式厌氧地,但在低速率和对该基材的亲和力低。 HMP的NADH-细胞色素C氧化还原酶活性对HAEM o2的结合和还原略微敏感。细胞色素C的vmax降低从7.1 s-1in下降到0.5mm CO-5.0 s-1in的存在100μmo2,对细胞色素c没有显着变化(分别为6.8至7.3μm)。邻微粒浓度的O2将细胞色素C减少到与100μmO2相似的程度,因此HMP作为宽特异性的还原酶作用,显然没有通过珠蛋白蛋白样血液转移的累积。这些数据与假设一致,即HMP可以充当O2的细胞内传感器,因为在没有O2电子通量的情况下从FAD到其他电子受体增加增加。然而,此类受体在体内的性质不知道,并且还考虑了O2感测的替代模型。

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