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Effect of phosphate on bacterioferritin-catalysed iron(II) oxidation

机译:磷酸盐对细菌铁蛋白催化的铁(II)氧化的影响

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The iron(III) mineral cores of bacterioferritins (BFRs), as isolated, contain a significant component of phosphate, with an iron-to-phosphate ratio approaching 1:1 in some cases. In order to better understand the in vivo core-formation process, the effect of phosphate on in vitro core formation in Escherichia coli BFR was investigated. Iron cores reconstituted in the presence of phosphate were found to have iron-to-phosphate ratios similar to those of native cores, and possessed electron paramagnetic resonance properties characteristic of the phosphate-rich core. Phosphate did not affect the stoichiometry of the initial iron(II) oxidation reaction that takes place at the intrasubunit dinuclear iron-binding sites (phase 2 of core formation), but did increase the rate of oxidation. Phosphate had a more significant effect on subsequent core formation (the phase 3 reaction), increasing the rate up to five-fold at pH 6.5 and 25 ℃. The dependence of the phase 3 rate on phosphate was complex, being greatest at low phosphate and gradually decreasing until the point of saturation at ~2 mM phosphate (for iron(II) concentrations <200 μM). Phosphate caused a significant decrease in the absorption properties of both phase 2 and phase 3 products, and the phosphate dependence of the latter mirrored the observed rate dependence, suggesting that distinct iron(III)-phosphate species are formed at different phosphate concentrations. The effect of phosphate on absorption properties enabled the observation of previously undetected events in the phase 2 to phase 3 transition period.
机译:分离的细菌铁蛋白(BFR)的铁(III)矿物核包含大量的磷酸盐,在某些情况下铁与磷酸盐的比例接近1:1。为了更好地了解体内核心形成过程,研究了磷酸盐对大肠杆菌BFR中体外核心形成的影响。发现在存在磷酸盐的情况下重构的铁核具有与天然核相似的铁-磷酸盐比,并且具有富含磷酸盐的核的电子顺磁共振特性。磷酸盐不影响在亚单位内双核铁结合位点(核心形成的第2阶段)发生的初始铁(II)氧化反应的化学计量,但确实增加了氧化速率。磷酸盐对随后的核形成(第3相反应)有更显着的影响,在pH 6.5和25℃时,磷酸盐的速率提高了五倍。 3相速率对磷酸盐的依赖性很复杂,在低磷酸盐时最大,然后逐渐降低,直到约2 mM磷酸盐达到饱和点(对于铁(II)浓度<200μM)。磷酸盐导致2相和3相产物的吸收性能显着降低,并且后者的磷酸盐依赖性反映了观察到的速率依赖性,表明在不同的磷酸盐浓度下会形成不同的磷酸铁(III)物质。磷酸盐对吸收性能的影响使得能够观察到先前在2期到3期过渡阶段未检测到的事件。

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