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Reactions of the Escherichia coli flavohaemoglobin (Hmp) with NADH and near-micromolar oxygen: oxygen affinity of NADH oxidase activity

机译:大肠杆菌黄胶蛋白(HMP)与NADH和接近微摩尔氧的反应:NADH氧化酶活性的氧亲和力

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The soluble flavohaemoglobin (Hmp) of Escherichia coli, product of the hmp gene, contains haem B and FAD in a single polypeptide of molecular mass 44 kDa. The function of this protein (and of the similar proteins identified in several bacteria and yeast) is unknown, but the observation that the binding of oxygen to haem modulates the reduction level of FAD has suggested that Hmp could act as an oxygen sensor. Here, stopped-flow, rapid-scan spectroscopy has shown that the oxidized protein reacts rapidly with NADH to form an oxygenated species, even when efforts are made to reduce oxygen concentrations to sub-micromolar levels, suggesting a high affinity for this ligand. As is the case at high oxygen concentrations (130 μM), oxygenated species formation was kinetically and spectrally heterogeneous. Between 12 ms and 1 s after mixing, following transient formation of the deoxy form and its reaction with dioxygen, a steady-state level of the oxygenated species was attained. During the oxygenated steady state, the flavin remained largely oxidized, as observed previously at 130 μM oxygen. Hmp is an NADH oxidase; on exhaustion of oxygen by reduction (in 10 s under these conditions), the oxygenated species disappeared to generate the deoxy Fe(II) haem, whereupon the flavin was reduced. The affinity for oxygen during NADH oxidation was measured by continuous dual-wavelength monitoring of the deoxygenation of oxymyoglobin. The Km for oxygen was 2.6 μM, much higher than the Km values determined, using the same method, for the membrane-bound terminal oxidases cytochromes bo’ and bd. These results show that the oxidase activity of Hmp, but not necessarily oxygen binding, would be minimal at oxygen concentrations that limit terminal oxidase function.
机译:HMP基因产物的大肠杆菌的可溶性黄胶蛋白(HMP),含有SPEM B和在分子质量44kDa的单个多肽中的FAD。该蛋白质的功能(以及在几种细菌和酵母中鉴定的类似蛋白质)是未知的,但观察到氧气的结合调节FAD的还原水平表明HMP可以充当氧传感器。这里,停止流动的快速扫描光谱表明,即使在将氧气浓度降至亚微摩拉水平的努力,氧化蛋白也与NADH快速反应以形成含氧物质,表明对该配体的高亲和力。与高氧浓度(130μm)的情况一样,含氧物质形成是动力学和光谱异质的。在混合后12ms和1s之间,在脱氧形式的瞬时形成及其与二恶英的反应之后,获得了稳态水平的氧化物质。在含氧稳态期间,如前所述在130μm氧气下观察到,Flavin在很大程度上氧化。 HMP是纳巴氧化酶;通过还原(在这些条件下的<10s下)耗尽氧气中,含氧物质消失以产生脱氧Fe(II)血液,从而降低了黄液。通过对氧阳蛋白的脱氧的连续双波长监测测量NADH氧化过程中的氧气的亲和力。对于膜结合的末端氧化酶细胞色素Bo'和Bd,用于氧的氧气的氧化物为2.6μm,远高于用相同方法测定的km值。这些结果表明,HMP的氧化酶活性,但不一定是含氧结合,在限制末端氧化酶功能的氧浓度下是最小的。

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