Larsen T M, Laughlin L T, Holden H M, Rayment I, Reed G H
Institute for Enzyme Research, Graduate School, University of Wisconsin-Madison 53705.
Biochemistry. 1994 May 24;33(20):6301-9. doi: 10.1021/bi00186a033.
The molecular structure of rabbit muscle pyruvate kinase, crystallized as a complex with Mn2+, K+, and pyruvate, has been solved to 2.9-A resolution. Crystals employed in the investigation belonged to the space group P1 and had unit cell dimensions a = 83.6 A, b = 109.9 A, c = 146.8 A, alpha = 94.9 degrees, beta = 93.6 degrees, and gamma = 112.3 degrees. There were two tetramers in the asymmetric unit. The structure was solved by molecular replacement, using as the search model the coordinates of the tetramer of pyruvate kinase from cat muscle [Muirhead, H., Claydon, D. A., Barford, D., Lorimer, C. G., Fothergill-Gilmore, L. A., Schiltz, E., & Schmitt, W. (1986) EMBO J.5, 475-481]. The amino acid sequence derived from the cDNA coding for the enzyme from rabbit muscle was fit to the electron density. The rabbit and cat muscle enzymes have approximately 94% sequence identity, and the folding patterns are expected to be nearly identical. There are, however, three regions where the topological models of the cat and rabbit pyruvate kinases differ. Mn2+ coordinates to the protein through the carboxylate side chains of Glu 271 and Asp 295. These two residues are strictly conserved in all known pyruvate kinases. In addition, the density for Mn2+ is connected to that of pyruvate, consistent with chelation through a carboxylate oxygen and the carbonyl oxygen of the substrate. The epsilon-NH2 of Lys 269 and the OH of Thr 327 lie on either side of the methyl group of bound pyruvate. Spherical electron density, assigned to K+, is located within a well-defined pocket of four oxygen ligands contributed by the carbonyl oxygen of Thr 113, O gamma of Ser 76, O delta 1 of Asn 74, and O delta 2 of Asp 112. The interaction of Asp 112 with the side chains of Lys 269 and Arg 72 may mediate, indirectly, monovalent cation effects on activity.
已解析出与Mn2 +、K +和丙酮酸形成复合物结晶的兔肌肉丙酮酸激酶的分子结构,分辨率达到2.9埃。研究中使用的晶体属于空间群P1,其晶胞参数为a = 83.6埃,b = 109.9埃,c = 146.8埃,α = 94.9°,β = 93.6°,γ = 112.3°。不对称单位中有两个四聚体。该结构通过分子置换法解析,使用猫肌肉丙酮酸激酶四聚体的坐标作为搜索模型[缪尔黑德,H.,克莱登,D. A.,巴福德,D.,洛里默,C. G.,福瑟吉尔 - 吉尔摩,L. A.,席尔茨,E.,&施密特,W.(1986年)《欧洲分子生物学组织杂志》5,475 - 481]。从编码兔肌肉该酶的cDNA推导的氨基酸序列与电子密度相匹配。兔和猫肌肉的酶具有约94%的序列同一性,预计折叠模式几乎相同。然而,在三个区域猫和兔丙酮酸激酶的拓扑模型不同。Mn2 +通过Glu 271和Asp 295的羧酸盐侧链与蛋白质配位。这两个残基在所有已知的丙酮酸激酶中严格保守。此外,Mn2 +的电子密度与丙酮酸的电子密度相连,这与通过底物的羧酸盐氧和羰基氧进行螯合一致。Lys 269的ε - NH2和Thr 327的OH位于结合丙酮酸甲基的两侧。归属于K +的球形电子密度位于由Thr 113的羰基氧、Ser 76的Oγ、Asn 74的Oδ1和Asp 112的Oδ2贡献的四个氧配体的明确口袋内。Asp 112与Lys 269和Arg 72侧链的相互作用可能间接介导一价阳离子对活性的影响。