Tavares P, Ravi N, Moura J J, LeGall J, Huang Y H, Crouse B R, Johnson M K, Huynh B H, Moura I
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Oeiras, Portugal.
J Biol Chem. 1994 Apr 8;269(14):10504-10.
Desulfoferrodoxin, a non-heme iron protein, was purified previously from extracts of Desulfovibrio desulfuricans (ATCC 27774) (Moura, I., Tavares, P., Moura, J. J. G., Ravi, N., Huynh, B. H., Liu, M.-Y., and LeGall, J. (1990) J. Biol. Chem. 265, 21596-21602). The as-isolated protein displays a pink color (pink form) and contains two mononuclear iron sites in different oxidation states: a ferric site (center I) with a distorted tetrahedral sulfur coordination similar to that found in desulforedoxin from Desulfovibrio gigas and a ferrous site (center II) octahedrally coordinated with predominantly nitrogen/oxygen-containing ligands. A new form of desulfoferrodoxin which displays a gray color (gray form) has now been purified. Optical, electron paramagnetic resonance (EPR), and Mössbauer data of the gray desulfoferrodoxin indicate that both iron centers are in the high-spin ferric states. In addition to the EPR signals originating from center I at g = 7.7, 5.7, 4.1, and 1.8, the gray form of desulfoferrodoxin exhibits a signal at g = 4.3 and a shoulder at g = 9.6, indicating a high-spin ferric state with E/D approximately 1/3 for the oxidized center II. Redox titrations of the gray form of the protein monitored by optical spectroscopy indicate midpoint potentials of +4 +/- 10 and +240 +/- 10 mV for centers I and II, respectively. Mössbauer spectra of the gray form of the protein are consistent with the EPR finding that both centers are high-spin ferric and can be analyzed in terms of the EPR-determined spin Hamiltonian parameters. The Mössbauer parameters for both the ferric and ferrous forms of center II are indicative of a mononuclear high spin iron site with octahedral coordination and predominantly nitrogen/oxygen-containing ligands. Resonance Raman studies confirm the structural similarity of center I and the distorted tetrahedral FeS4 center in desulforedoxin and provide evidence for one or two cysteinyl-S ligands for center II. On the basis of the resonance Raman results, the 635 nm absorption band that is responsible for the gray color of the oxidized protein is assigned to a cysteinyl-S-->Fe(III) charge transfer transition localized on center II. The novel properties and possible function of center II are discussed in relation to those of mononuclear iron centers in other enzymes.
脱硫铁氧化还原蛋白是一种非血红素铁蛋白,此前已从脱硫脱硫弧菌(ATCC 27774)的提取物中纯化得到(莫拉,I.,塔瓦雷斯,P.,莫拉,J. J. G.,拉维,N.,胡恩,B. H.,刘,M.-Y.,和勒加尔,J.(1990)《生物化学杂志》265,21596 - 21602)。刚分离出的蛋白质呈现粉红色(粉红色形式),含有两个处于不同氧化态的单核铁位点:一个三价铁位点(中心I),其硫配位呈扭曲四面体结构,类似于巨大脱硫弧菌脱硫铁氧化还原蛋白中的结构;一个二价铁位点(中心II),以八面体方式配位,主要与含氮/氧配体结合。现在已纯化出一种呈现灰色的新型脱硫铁氧化还原蛋白(灰色形式)。灰色脱硫铁氧化还原蛋白的光学、电子顺磁共振(EPR)和穆斯堡尔数据表明,两个铁中心均处于高自旋三价铁状态。除了在g = 7.7、5.7、4.1和1.8处源自中心I的EPR信号外,灰色形式的脱硫铁氧化还原蛋白在g = 4.3处呈现一个信号,在g = 9.6处有一个肩峰,表明氧化的中心II的高自旋三价铁状态的E/D约为1/3。通过光谱监测的该蛋白质灰色形式的氧化还原滴定表明,中心I和中心II的中点电位分别为 +4 ± 10和 +240 ± 10 mV。该蛋白质灰色形式的穆斯堡尔光谱与EPR结果一致,即两个中心均为高自旋三价铁,并且可以根据EPR确定的自旋哈密顿参数进行分析。中心II的三价铁和二价铁形式的穆斯堡尔参数均表明是一个具有八面体配位且主要与含氮/氧配体结合的单核高自旋铁位点。共振拉曼研究证实了中心I与脱硫铁氧化还原蛋白中扭曲的四面体FeS4中心的结构相似性,并为中心II提供了一个或两个半胱氨酰 - S配体的证据。基于共振拉曼结果,导致氧化蛋白质呈现灰色的635 nm吸收带被归因于中心II上的半胱氨酰 - S→Fe(III)电荷转移跃迁。结合其他酶中单核铁中心的性质,讨论了中心II的新特性和可能的功能。