首页> 美国卫生研究院文献>Biochemical Journal >Interaction of nitric oxide with non-haem iron sites of Escherichia coli bacterioferritin: reduction of nitric oxide to nitrous oxide and oxidation of iron(II) to iron(III).
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Interaction of nitric oxide with non-haem iron sites of Escherichia coli bacterioferritin: reduction of nitric oxide to nitrous oxide and oxidation of iron(II) to iron(III).

机译:一氧化氮与大肠杆菌细菌铁蛋白的非血红素铁位点的相互作用:将一氧化氮还原为一氧化二氮并将铁(II)氧化为铁(III)。

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摘要

The bacterioferritin (BFR) of Escherichia coli consists of 24 identical subunits, each containing a dinuclear metal-binding site consisting of two histidines and four carboxylic acid residues. Earlier studies showed that the characterization of iron binding to BFR could be aided by EPR analysis of iron-nitrosyl species resulting from the addition of NO to the protein [Le Brun, Cheesman, Andrews, Harrison, Guest, Moore and Thomson (1993) FEBS Lett. 323, 261-266]. We now report data from gas chromatographic head space analysis combined with EPR spectroscopy to show that NO is not an inert probe: iron(II)-BFR catalyses the reduction of NO to N2O, resulting in oxidation of iron(II) at the dinuclear centre and the subsequent detection of mononuclear iron(III). In the presence of excess reductant (sodium ascorbate), iron(II)-BFR also catalyses the reduction of NO to N2O, giving rise to three mononuclear iron-nitrosyl species which are detectable by EPR. One of these, a dinitrosyl-iron complex of S = 1/2, present at a maximum of one per subunit, is shown by EPR studies of site-directed variants of BFR not to be located at the dinuclear centre. This is consistent with a proposal that the diferric form of the centre is unstable and breaks down to form mononuclear iron species.
机译:大肠杆菌的细菌铁蛋白(BFR)由24个相同的亚基组成,每个亚基均包含由两个组氨酸和四个羧酸残基组成的双核金属结合位点。较早的研究表明,铁与BFR的结合可以通过对蛋白质中添加NO产生的亚硝化铁的EPR分析来辅助[Le Brun,Cheesman,Andrews,Harrison,Guest,Moore and Thomson(1993)FEBS来吧323,261-266]。现在,我们报告从气相色谱顶空分析与EPR光谱结合得出的数据,以表明NO不是惰性探针:铁(II)-BFR催化NO还原为N2O,从而导致双核中心处的铁(II)氧化以及随后的单核铁(III)检测。在过量还原剂(抗坏血酸钠)的存在下,铁(II)-BFR还催化将NO还原为N2O,从而产生了可通过EPR检测到的三种单核铁-亚硝酰基。其中之一,S = 1/2的二亚硝酰基-铁络合物,每个亚基最多存在一个,通过EPR研究表明,BFR的定点变异体不位于双核中心。这与中心的二价形式不稳定并且分解形成单核铁物种的提议相一致。

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