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嗜热栖热菌铁氧化还原蛋白中形成的铁硫簇([3Fe-4S]或[M3Fe-4S])反应的伏安法研究。

Voltammetric studies of the reactions of iron-sulphur clusters ([3Fe-4S] or [M3Fe-4S]) formed in Pyrococcus furiosus ferredoxin.

作者信息

Fawcett S E, Davis D, Breton J L, Thomson A J, Armstrong F A

机构信息

Department of Chemistry, University of Oxford, South Parks Road, Oxford, OX1 3QR, UK.

出版信息

Biochem J. 1998 Oct 15;335 ( Pt 2)(Pt 2):357-68. doi: 10.1042/bj3350357.

Abstract

Reactions of the [3Fe-4S] cluster and various metallated [M3Fe-4S] adducts co-ordinated in the ferredoxin from the hyperthermophile Pyrococcus furiosus have been studied by protein-film voltammetry, bulk-solution voltammetry, solution kinetics and magnetic CD (MCD). The [3Fe-4S] cluster exhibits two couples, [3Fe-4S]+/0 and [3Fe-4S]0/2-. Film voltammetry is possible over a wide pH range (2-8), revealing that the [3Fe-4S]+/0 couple shows a complex pH dependence with pKred1=2.8, pKox=4.9 and pKred2=6.7. From MCD, pKred1 corresponds with protonation of [3Fe-4S]0 to give a spectroscopically distinct species, as reported for ferredoxins from Azotobacter and Sulfolobus. The status of the disulphide/disulphydryl entity makes no significant difference to the data (given for the -S-S- form). Formation of the hyper-reduced [3Fe-4S]2- state is observed, requiring 3H+ for the overall 3e- reduction of [3Fe-4S]+, the change therefore being electroneutral. By comparison with the ferredoxin from Desulfovibrio africanus, uptake of Fe(II) and other M(II) by [3Fe-4S]0 to give [M3Fe-4S] clusters is slow (t1/2>10 min at room temperature, slower still if the protein is adsorbed on the electrode), whereas reaction with Tl(I) to produce [Tl3Fe-4S] is very rapid (t1/2<<1 s), suggesting that co-ordination of Tl does not require reorganization of the protein structure. Rates of formation of [3Fe-4S] from [M3Fe-4S] adducts increase sharply at high potentials, showing that metal release involves a labile 'super-oxidized' [M3Fe-4S]3+ state.

摘要

通过蛋白质膜伏安法、本体溶液伏安法、溶液动力学和磁圆二色光谱法(MCD),研究了嗜热栖热菌(Pyrococcus furiosus)铁氧化还原蛋白中配位的[3Fe-4S]簇和各种金属化的[M3Fe-4S]加合物的反应。[3Fe-4S]簇表现出两对氧化还原对,即[3Fe-4S]+/0和[3Fe-4S]0/2-。在较宽的pH范围(2 - 8)内可以进行膜伏安法测量,结果表明[3Fe-4S]+/0氧化还原对的pH依赖性较为复杂,其还原半波电位pKred1 = 2.8,氧化半波电位pKox = 4.9,另一个还原半波电位pKred2 = 6.7。根据MCD结果,pKred1对应于[3Fe-4S]0质子化生成一种光谱上不同的物种,这与固氮菌和硫化叶菌的铁氧化还原蛋白情况一致。二硫键/二硫醇实体的状态对数据没有显著影响(给出的是 -S-S- 形式的数据)。观察到了超还原态[3Fe-4S]2- 的形成,[3Fe-4S]+整体3电子还原需要3个H+,因此该变化是电中性的。与非洲脱硫弧菌(Desulfovibrio africanus)的铁氧化还原蛋白相比,[3Fe-4S]0摄取Fe(II)和其他M(II)生成[M3Fe-4S]簇的过程较慢(室温下t1/2 > 10分钟,如果蛋白质吸附在电极上则更慢),而与Tl(I)反应生成[Tl3Fe-4S]非常迅速(t1/2 << 1秒),这表明Tl的配位不需要蛋白质结构的重组。从[M3Fe-4S]加合物形成[3Fe-4S]的速率在高电位下急剧增加,表明金属释放涉及一种不稳定的“超氧化”[M3Fe-4S]3+ 状态。

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