Djinović Carugo K, Battistoni A, Carrì M T, Polticelli F, Desideri A, Rotilio G, Coda A, Wilson K S, Bolognesi M
Dipartimento di Genetica e Microbiologia, Università di Pavia, Italy.
Acta Crystallogr D Biol Crystallogr. 1996 Jan 1;52(Pt 1):176-88. doi: 10.1107/S0907444995007608.
Xenopus laevis Cu,Zn superoxide dismutase (recombinant isoenzyme b) has been crystallized and the structure determined at 1.49 A resolution. The crystals belong to space group P2(1)2(1)2(1), with cell constants a = 73.33, b = 68.86, c = 59.73 A, and contain one dimeric molecule of M(r) 32 000 per asymmetric unit. The structure was solved by molecular-replacement techniques using the semisynthetic Cu,Co bovine enzyme as search model, and refined by molecular dynamics with a crystallographic pseudo-energy term. During the final steps, positional and anisotropic thermal parameters of the atoms were refined. The R factor for the 49 209 unique reflections in the 10.0-1.49 A resolution range is 0.104, for a model comprising 2023 protein atoms, two Cu(2+), two Zn(2+), and 353 water molecules. The overall temperature factor for the model, including solvent, is 20.3 A(2), while the calculated r.m.s. coordinate error for the refined model is 0.036 A. As suggested by the primary structure homology to any other known intracellular eukaryotic superoxide dismutase (> 50%), the typical structural scaffolding of flattened antiparallel eight-stranded (beta-barrel is well conserved in X. laevis Cu,Zn superoxide dismutase b, together with the coordination geometry of the metal centers in the active site. The higher thermal stability of the bb X. laevis superoxide dismutase homodimer, with respect to dimers involving the a-type isoenzyme subunit(s), can be related, on the basis of the high-resolution structure, to side-chain and solvent interactions centered on residue Tyr149, in both b-type subunits. The analysis of the overall solvent structure reveals a number of equivalent water molecule sites in the two subunits, and in homologous superoxide dismutase models. Their locations are discussed in detail and classified on the basis of their structural role.
非洲爪蟾的铜锌超氧化物歧化酶(重组同工酶b)已被结晶,并以1.49埃的分辨率确定了其结构。晶体属于空间群P2(1)2(1)2(1),晶胞参数a = 73.33、b = 68.86、c = 59.73埃,每个不对称单位包含一个相对分子质量为32000的二聚体分子。该结构通过分子置换技术,以半合成的铜钴牛酶作为搜索模型得以解析,并通过带有晶体学伪能量项的分子动力学进行了精修。在最后步骤中,对原子的位置和各向异性热参数进行了精修。对于分辨率在10.0 - 1.49埃范围内的49209个独立反射,R因子为0.104,该模型包含2023个蛋白质原子、两个Cu(2+)、两个Zn(2+)和353个水分子。该模型(包括溶剂)的整体温度因子为20.3埃²,而精修模型计算得到的均方根坐标误差为0.036埃。与任何其他已知的细胞内真核超氧化物歧化酶的一级结构同源性(> 50%)表明,扁平反平行八链(β桶)的典型结构支架在非洲爪蟾铜锌超氧化物歧化酶b中以及活性位点金属中心的配位几何结构中都得到了很好的保留。基于高分辨率结构,相对于涉及a型同工酶亚基的二聚体,非洲爪蟾超氧化物歧化酶b同型二聚体具有更高的热稳定性,这可能与两个b型亚基中以残基Tyr149为中心的侧链和溶剂相互作用有关。对整体溶剂结构的分析揭示了两个亚基以及同源超氧化物歧化酶模型中有许多等效的水分子位点。详细讨论了它们的位置,并根据其结构作用进行了分类。