Kennedy M C, Kent T A, Emptage M, Merkle H, Beinert H, Münck E
J Biol Chem. 1984 Dec 10;259(23):14463-71.
Beef heart aconitase, as isolated under aerobic conditions, is inactive and contains a [3Fe-4S]1+ cluster. On incubation at pH greater than 9.5 (or treatment with 4-8 M urea) the color of the protein changes from brown to purple. This purple form is stable and can be converted back in good yield to the active [4Fe-4S]2+ form by reduction in the presence of iron. Active aconitase is converted to the purple form at alkaline pH only after oxidative inactivation. The Fe/S2- ratio of purple aconitase is 0.8, indicating the presence of [3Fe-4S] clusters. The number of SH groups readily reacting with 5,5'-dithiobis(2-nitrobenzoic acid) is increased from approximately 1 in the enzyme as isolated to 7-8 in the purple form, indicating a partial unfolding of the protein. On conversion of inactive aconitase to the purple form, the EPR signal at g = 2.01 (S = 1/2) is replaced by signals at g = 4.3 and 9.6 (S = 5/2). Mössbauer spectroscopy shows that purple aconitase has high-spin ferric ions, each residing in a tetrahedral environment of sulfur atoms. The three iron sites are exchange-coupled to yield a ground state with S = 5/2. Analysis of the data within a spin coupling model shows that J13 congruent to J23 and 2 J12 less than J13, where the Jik describe the antiferromagnetic (J greater than 0) exchange interactions among the three iron pairs. Comparison of our data with those reported for synthetic Fe-S clusters (Hagen, K. S., Watson, A. D., and Holm, R. H., (1983) J. Am. Chem. Soc. 105, 3905-3913) shows that purple aconitase contains a linear [3Fe-4S]1+ cluster, a structural isomer of the S = 1/2 cluster of inactive aconitase. Our studies also show that protein-bound [2Fe-2S] clusters can be generated under conditions where partial unfolding of the protein occurs.
在有氧条件下分离得到的牛心乌头酸酶没有活性,且含有一个[3Fe - 4S]1+簇。在pH大于9.5的条件下孵育(或用4 - 8 M尿素处理)时,蛋白质的颜色从棕色变为紫色。这种紫色形式是稳定的,在有铁存在的情况下通过还原可以高产率地变回活性[4Fe - 4S]2+形式。活性乌头酸酶只有在氧化失活后才会在碱性pH下转变为紫色形式。紫色乌头酸酶的Fe/S2-比值为0.8,表明存在[3Fe - 4S]簇。与5,5'-二硫代双(2 - 硝基苯甲酸)容易反应的SH基团数量从刚分离出的酶中的约1个增加到紫色形式中的7 - 8个,这表明蛋白质发生了部分展开。无活性的乌头酸酶转变为紫色形式时,g = 2.01(S = 1/2)处的EPR信号被g = 4.3和9.6(S = 5/2)处的信号取代。穆斯堡尔光谱表明紫色乌头酸酶含有高自旋铁离子,每个铁离子都位于硫原子的四面体环境中。这三个铁位点通过交换耦合产生基态S = 5/2。在自旋耦合模型中对数据的分析表明J13与J23相等,且2J12小于J13,其中Jik描述了三个铁对之间的反铁磁(J大于0)交换相互作用。将我们的数据与报道的合成Fe - S簇的数据(哈根,K.S.,沃森,A.D.,和霍尔姆,R.H.,(1983年)《美国化学会志》105,3905 - 3913)进行比较表明,紫色乌头酸酶含有一个线性[3Fe - 4S]1+簇,它是无活性乌头酸酶的S = 1/2簇的结构异构体。我们的研究还表明,在蛋白质发生部分展开的条件下可以生成与蛋白质结合的[2Fe - 2S]簇。