Department of Chemistry and Molecular Biology, Swedish University of Agricultural Sciences, Uppsala Biomedical Center, Box 590, S-751 24 Uppsala, Sweden.
Proc Natl Acad Sci U S A. 1985 Oct;82(20):6855-9. doi: 10.1073/pnas.82.20.6855.
A high-resolution structure determination of glycolate oxidase from spinach is reported. X-ray data were collected on films at the synchrotron radiation source in Daresbury, England. The structure was solved by using two heavy-atom derivatives and a solvent-flattening procedure developed by B.-C. Wang. The subunit structure is essentially a structure of the eight-stranded alpha/beta-barrel type first described for triosephosphate isomerase. In addition, there are 70 residues at the NH(2) terminus and 45 residues between strand four and helix four of the barrel, which are arranged in a helical domain outside the COOH end of the parallel strands of the barrel. The active site is in a cleft between these domains with the coenzyme FMN essentially bound to the barrel and a substrate analogue, thioglycolate, bound to the helical domain. The molecule is octameric with 422 symmetry and has a 15- to 20-A-wide hole in the middle.
报道了菠菜乙醇酸氧化酶的高分辨率结构测定。X 射线数据是在英国达勒姆的同步加速器辐射源的胶片上收集的。该结构是通过使用两个重原子衍生物和 B.-C. Wang 开发的溶剂铺平程序来解决的。亚基结构本质上是三磷酸甘油醛异构酶首次描述的八链 α/β-桶型结构。此外,在桶的第四链和第四螺旋之间还有 70 个残基和 45 个残基,它们排列在桶的平行链的 COOH 端之外的螺旋域中。活性位点位于这些结构域之间的裂隙中,辅酶 FMN 基本上与桶结合,底物类似物硫代乙醇酸与螺旋域结合。该分子是具有 422 对称性的八聚体,在中间有一个 15-20Å宽的孔。