Lindqvist Y
Department of Molecular Biology, Swedish University of Agricultural Sciences, Uppsala.
J Mol Biol. 1989 Sep 5;209(1):151-66. doi: 10.1016/0022-2836(89)90178-2.
The amino acid sequence of glycolate oxidase from spinach has been fitted to an electron density map of 2.0 A nominal resolution and the structure has been refined using the restrained parameter least-squares refinement of Hendrickson and Konnert. A final crystallographic R-factor of 18.9% was obtained for 32,888 independent reflections from 5.5 to 2 A resolution. The geometry of the model, consisting of 350 amino acid residues, the cofactor flavin mononucleotide and 298 solvent molecules, is close to ideal with root-mean-square deviations of 0.015 A in bond lengths and 2.6 degrees in bond angles. The expected trimodal distribution with preference for staggered conformation is obtained for the side-chain chi 1-angles. The core of the subunit is built up from the eight beta-strands in the beta/alpha-barrel. This core consists of two hydrophobic layers. One in the center is made up of residues pointing in from the beta-strands towards the barrel axis and the second, consisting of two segments of residues, pointing out from the beta-strands towards the eight alpha-helices of the barrel and pointing from the helices towards the strands. The hydrogen bond pattern for the beta-strands in the beta/alpha-barrel is described. There are a number of residues with 3(10)-helix conformation, in particular there is one left-handed helix. The ordered solvent molecules are organized mainly in clusters. The average isotropic temperature factor is quite high, 27.1 A2, perhaps a reflection of the high solvent content in the crystal. The octameric glycolate oxidase molecule, which has 422 symmetry, makes strong interactions around the 4-fold axis forming a tight tetramer, but only weak interactions between the two tetramers forming the octamer.
菠菜乙醇酸氧化酶的氨基酸序列已与名义分辨率为2.0埃的电子密度图拟合,并且使用亨德里克森和孔内特的约束参数最小二乘法对结构进行了优化。对于分辨率从5.5到2埃的32888个独立反射,最终晶体学R因子为18.9%。该模型由350个氨基酸残基、辅因子黄素单核苷酸和298个溶剂分子组成,其几何结构接近理想状态,键长的均方根偏差为0.015埃,键角的均方根偏差为2.6度。侧链χ1角呈现出预期的三峰分布,偏好交错构象。亚基的核心由β/α桶中的八条β链组成。这个核心由两个疏水层构成。一个在中心,由从β链指向桶轴的残基组成;第二个由两段残基组成,从β链指向桶的八个α螺旋,并从螺旋指向链。描述了β/α桶中β链的氢键模式。有许多具有3(10)螺旋构象的残基,特别是有一个左手螺旋。有序的溶剂分子主要以簇的形式排列。平均各向同性温度因子相当高,为27.1埃²,这可能反映了晶体中高溶剂含量。具有422对称性的八聚体乙醇酸氧化酶分子在四重轴周围形成强相互作用,形成紧密的四聚体,但形成八聚体的两个四聚体之间只有弱相互作用。