Stout C D, Stura E A, McRee D E
Department of Molecular Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA, 92037, USA.
J Mol Biol. 1998 May 8;278(3):629-39. doi: 10.1006/jmbi.1998.1732.
The crystal structure of Azotobacter vinelandii ferredoxin I (FdI) at 100 K has been refined at 1.35 A resolution by full matrix block diagonal least-squares methods with anisotropic temperature factors for all non-hydrogen atoms and with hydrogen atoms included in the model. Fe-S bonds within the [3Fe-4S]+ and [4Fe-4S]2+ clusters of the protein are determined with an accuracy of at least 0.01 A. Analysis of metric parameters reveals greater variation in bonds and angles within the [3Fe-4S]+ cluster than in the [4Fe-4S]2+ cluster, whereas the opposite is true regarding the cysteine Sgamma atoms ligating to the two [Fe-S] cores. The [3Fe-4S]+ core is asymmetrically distorted by the protein matrix but relatively uniformly ligated by its three Cys ligands; in contrast the tetrahedral [4Fe-4S]2+ core is relatively symmetric but non-uniformily ligated by its four Cys ligands, three of which occur in a conserved CysxxCysxxCys residue motif. Comparison of the [3Fe-4S]+ clusters in FdI and Desulfovibrio gigas ferredoxin II, refined at 1.7 A resolution, indicates that within the limit of accuracy of the two refinements the cuboidal core is differently distorted in the two proteins. Comparison of the [3Fe-4S]+ core in FdI with the structure of a reduced [Fe3S4]o synthetic analog indicates that the protein-bound cluster displays distortions not intrinsic to the core itself. Nevertheless, both [3Fe-4S]+ and [Fe3S4]o cores have metric features consistent with expected trends due to net charge on Fe and valency of S, and both exhibit a splayed configuration with respect to their three mu2S atoms in the absence of a fourth Fe. Comparison of the [4Fe-4S]2+ cluster in FdI with the structures of [Fe4S4]2+ synthetic analogs shows that the protein bound and synthetic cubanes are very similar in geometric parameters, including the presence of tetragonal distortion in the FdI cluster common to this oxidation state.
用全矩阵分块对角最小二乘法,对100K下的棕色固氮菌铁氧化还原蛋白I(FdI)晶体结构进行了精修,分辨率为1.35 Å,所有非氢原子采用各向异性温度因子,模型中包含氢原子。该蛋白[3Fe - 4S]+和[4Fe - 4S]2+簇内的Fe - S键测定精度至少为0.01 Å。对度量参数的分析表明,[3Fe - 4S]+簇内的键和角度变化比[4Fe - 4S]2+簇更大,而连接到两个[Fe - S]核心的半胱氨酸Sγ原子则相反。[3Fe - 4S]+核心被蛋白质基质不对称扭曲,但其三个半胱氨酸配体的连接相对均匀;相比之下,四面体[4Fe - 4S]2+核心相对对称,但其四个半胱氨酸配体的连接不均匀,其中三个出现在保守的CysxxCysxxCys残基基序中。将FdI中的[3Fe - 4S]+簇与分辨率为1.7 Å的巨大脱硫弧菌铁氧化还原蛋白II进行比较,结果表明,在两种精修的精度范围内,长方体核心在两种蛋白质中的扭曲方式不同。将FdI中的[3Fe - 4S]+核心与还原态[Fe3S4]o合成类似物的结构进行比较,结果表明,与蛋白质结合的簇显示出并非核心本身固有的扭曲。然而,[3Fe - 4S]+和[Fe3S4]o核心都具有与由于铁的净电荷和硫的化合价导致的预期趋势一致的度量特征,并且在没有第四个铁的情况下,两者相对于其三个μ2S原子都呈现出展开的构型。将FdI中的[4Fe - 4S]2+簇与[Fe4S4]2+合成类似物的结构进行比较,结果表明,与蛋白质结合的立方烷和合成立方烷在几何参数上非常相似,包括FdI簇中这种氧化态常见的四方畸变。