Anemüller S, Hettmann T, Moll R, Teixeira M, Schäfer G
Institut für Biochemie, Medizinische Universität zu Lübeck, Germany.
Eur J Biochem. 1995 Sep 1;232(2):563-8.
The membrane-bound succinate dehydrogenase from the thermoacidophilic archaeon Thermoplasma acidophilum was characterized by EPR spectroscopy and its functional properties were determined. The highest turnover values of succinate dehydrogenase activity were observed at pH 7.4, which is somewhat above the internal pH value of T. acidophilum. The temperature optimum of the reaction was determined as 78 degrees C and the Km value for succinate using phenazine methosulfate as the electron acceptor at 53 degrees C was 0.32 mM. The membrane-bound enzyme was able to reduce the artificial electron acceptors phenazine methosulfate, N,N,N',N'-tetramethyl-p-phenylenediamine, and 2,6-dichloroindophenol. Succinate oxidation was coupled to oxygen consumption in a completely 2-n-heptyl-4-hydroxyquinoline-N-oxide-sensitive manner. In the oxidized state, T. acidophilum membranes exhibited an almost isotropic EPR spectrum with g-values at gz = 2.017, gy = 2.000, and gx = 1.968 that were assigned to a [3Fe-4S]1+ cluster (S3). Upon reduction with succinate, the membranes displayed a spectrum characteristic of 2Fe-2S clusters (S1), with g-values at gz = 2.029, gy = 1.935, and gx = 1.915. In the dithionite-reduced state, additional resonances can be observed. An axial component, with g-values at gz = 2.057, gy = 1.917, and gx = 1.917 was assigned to a [4Fe-4S]1+ cluster. The saturation behaviour of the S1 cluster was strongly altered in the dithionite-reduced form, thus indicating spin-spin interaction between the S1 center and another paramagnetic center, possibly cluster S2. In both the succinate and the dithionite-reduced membranes, parallel-mode EPR spectra displayed a resonance at g = 14, which may be due to a transition of the S = 2 multiplet of the reduced 3Fe-4S cluster. Spin quantitation yielded a relative stoichiometry of cluster S1 to cluster S3 of 1:1. The results obtained by EPR spectroscopy indicated that the characteristic iron-sulfur cluster S1 [2Fe-2S], S2 [4Fe-4S], and S3 [3Fe-4S], were also present in this archaeal succinate dehydrogenase. EPR redox titrations of T. acidophilum membranes at pH 5.5 yielded a reduction potential of +60 +/- 20 mV for cluster S3 and of +68 +/- 20 mV for cluster S1. The axial [4Fe-4S]2+/1+ center had a reduction potential of -210 +/- 20 mV.
对嗜热嗜酸古菌嗜热栖热菌的膜结合琥珀酸脱氢酶进行了电子顺磁共振(EPR)光谱表征,并测定了其功能特性。琥珀酸脱氢酶活性的最高周转值在pH 7.4时观察到,该pH值略高于嗜热栖热菌的内部pH值。反应的最适温度确定为78℃,在53℃下以吩嗪硫酸甲酯作为电子受体时,琥珀酸的Km值为0.32 mM。该膜结合酶能够还原人工电子受体吩嗪硫酸甲酯、N,N,N',N'-四甲基对苯二胺和2,6-二氯靛酚。琥珀酸氧化以完全对2-正庚基-4-羟基喹啉-N-氧化物敏感的方式与氧气消耗偶联。在氧化状态下,嗜热栖热菌膜呈现出几乎各向同性的EPR光谱,其g值为gz = 2.017、gy = 2.000和gx = 1.968,这些值被指定为一个[3Fe-4S]1+簇(S3)。用琥珀酸还原后,膜呈现出2Fe-2S簇(S1)的特征光谱,其g值为gz = 2.029、gy = 1.935和gx = 1.915。在连二亚硫酸盐还原状态下,可以观察到额外的共振。一个轴向成分,其g值为gz = 2.057、gy = 1.917和gx = 1.917,被指定为一个[4Fe-4S]1+簇。S1簇的饱和行为在连二亚硫酸盐还原形式中发生了强烈变化,因此表明S1中心与另一个顺磁中心(可能是簇S2)之间存在自旋-自旋相互作用。在琥珀酸和连二亚硫酸盐还原的膜中,平行模式EPR光谱在g = 14处都显示出一个共振,这可能是由于还原的3Fe-4S簇的S = 2多重态的跃迁。自旋定量得出簇S1与簇S3的相对化学计量比为1:1。EPR光谱获得的结果表明,这种古菌琥珀酸脱氢酶中也存在特征性的铁硫簇S1 [2Fe-2S]、S2 [4Fe-4S]和S3 [3Fe-4S]。在pH 5.5下对嗜热栖热菌膜进行的EPR氧化还原滴定得出,簇S3的还原电位为+60 +/- 20 mV,簇S1的还原电位为+68 +/- 20 mV。轴向[4Fe-4S]2+/1+中心的还原电位为-210 +/- 20 mV。