Wagner U G, Pattridge K A, Ludwig M L, Stallings W C, Werber M M, Oefner C, Frolow F, Sussman J L
Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.
Protein Sci. 1993 May;2(5):814-25. doi: 10.1002/pro.5560020511.
The three-dimensional X-ray structure of a recombinant human mitochondrial manganese superoxide dismutase (MnSOD) (chain length 198 residues) was determined by the method of molecular replacement using the related structure of MnSOD from Thermus thermophilus as a search model. This tetrameric human MnSOD crystallizes in space group P2(1)2(1)2 with a dimer in the asymmetric unit (Wagner, U.G., Werber, M.M., Beck, Y., Hartman, J.R., Frolow, F., & Sussman, J.L., 1989, J. Mol. Biol. 206, 787-788). Refinement of the protein structure (3,148 atoms with Mn and no solvents), with restraints maintaining noncrystallographic symmetry, converged at an R-factor of 0.207 using all data from 8.0 to 3.2 A resolution and group thermal parameters. The monomer-monomer interactions typical of bacterial Fe- and Mn-containing SODs are retained in the human enzyme, but the dimer-dimer interactions that form the tetramer are very different from those found in the structure of MnSOD from T. thermophilus. In human MnSOD one of the dimers is rotated by 84 degrees relative to its equivalent in the thermophile enzyme. As a result the monomers are arranged in an approximately tetrahedral array, the dimer-dimer packing is more intimate than observed in the bacterial MnSOD from T. thermophilus, and the dimers interdigitate. The metal-ligand interactions, determined by refinement and verified by computation of omit maps, are identical to those observed in T. thermophilus MnSOD.
通过分子置换法,以嗜热栖热菌的锰超氧化物歧化酶(MnSOD)的相关结构作为搜索模型,确定了重组人线粒体锰超氧化物歧化酶(链长198个残基)的三维X射线结构。这种四聚体人MnSOD在空间群P2(1)2(1)2中结晶,不对称单位中有一个二聚体(Wagner, U.G., Werber, M.M., Beck, Y., Hartman, J.R., Frolow, F., & Sussman, J.L., 1989, J. Mol. Biol. 206, 787 - 788)。在保持非晶体学对称性的约束条件下,对蛋白质结构(含锰且无溶剂的3148个原子)进行精修,使用8.0至3.2 Å分辨率的所有数据和基团热参数,收敛到R因子为0.207。细菌含Fe和Mn的SOD典型的单体 - 单体相互作用在人酶中得以保留,但形成四聚体的二聚体 - 二聚体相互作用与嗜热栖热菌MnSOD结构中的那些相互作用非常不同。在人MnSOD中,其中一个二聚体相对于嗜热菌酶中的等效二聚体旋转了84度。结果,单体排列成近似四面体阵列,二聚体 - 二聚体堆积比嗜热栖热菌的细菌MnSOD中观察到的更紧密,并且二聚体相互交错。通过精修确定并经省略图计算验证的金属 - 配体相互作用与嗜热栖热菌MnSOD中观察到的相同。