McRee D E, Richardson D C, Richardson J S, Siegel L M
J Biol Chem. 1986 Aug 5;261(22):10277-81.
Isolated hemoprotein subunits of Escherichia coli NADPH:sulfite reductase catalyze the 6-electron reduction of SO2-3 to S2-. The prosthetic groups of the hemoprotein, a siroheme and a Fe4S4 cluster, have been shown by spectroscopy to be tightly coupled. We have crystallized the isolated hemoprotein subunits and produced a 3-A electron density map by x-ray crystallography. A single heavy atom derivative and the native anomalous scattering (from the protein's 5 Fe and several S) were used to calculate the phases. In the electron density map, the cluster has a geometry similar to other Fe4S4 clusters. Both the cluster and the siroheme are found near the surface of the protein. The siroheme and the Fe4S4 cluster pack next to each other in the structure, apparently with a common ligand, consistent with a cysteine S gamma, shared by the siroheme Fe and one of the cluster Fe. The distance from the siroheme Fe to the center of the cluster is 5.5 A and the distance from the siroheme Fe to the nearest cluster Fe is 4.4 A. The edge of the siroheme macrocycle appears to be in Van der Waals contact with a cubane S atom of the cluster. The sixth coordination position of the siroheme Fe appears unoccupied and is quite exposed to the solvent. Some possible implications of the proposed structure on the role of the bridged siroheme-Fe4S4 cluster in catalysis are discussed.
大肠杆菌NADPH:亚硫酸盐还原酶的分离血红素蛋白亚基催化亚硫酸根离子(SO₂⁻₃)至硫离子(S²⁻)的6电子还原反应。通过光谱学研究表明,血红素蛋白的辅基,即一个西罗血红素和一个Fe₄S₄簇,紧密耦合。我们已经将分离的血红素蛋白亚基结晶,并通过X射线晶体学获得了3埃的电子密度图。使用单个重原子衍生物和天然反常散射(来自蛋白质中的5个铁和几个硫)来计算相位。在电子密度图中,该簇的几何形状与其他Fe₄S₄簇相似。簇和西罗血红素都位于蛋白质表面附近。在结构中,西罗血红素和Fe₄S₄簇彼此相邻堆积,显然有一个共同的配体,这与西罗血红素铁和簇铁之一共享的半胱氨酸Sγ一致。从西罗血红素铁到簇中心的距离为5.5埃,从西罗血红素铁到最近的簇铁的距离为4.4埃。西罗血红素大环的边缘似乎与簇的一个立方烷硫原子处于范德华接触。西罗血红素铁的第六个配位位置似乎未被占据,并且相当暴露于溶剂中。讨论了所提出的结构对桥连西罗血红素 - Fe₄S₄簇在催化作用中作用的一些可能影响。