Diederichs K, Schulz G E
Institut für Organische Chemie und Biochemie der Universität, Freiburg i.Br., West Germany.
Biochemistry. 1990 Sep 4;29(35):8138-44. doi: 10.1021/bi00487a022.
Crystals of adenylate kinase from beef heart mitochondrial matrix (EC 2.7.4.10) complexed with its substrate AMP were analyzed by X-ray diffraction. The crystal structure was solved by multiple isomorphous replacement and solvent flattening at a resolution of 3.0 A. There are two enzyme-substrate molecules in the asymmetric unit. The resolution was extended to 1.9 A by model building and refinement using simulated annealing. The current R-factor is 28.4%. The model is given as a backbone tracing for residues 5-218. The enzyme can be subdivided into three domains, the relative arrangements of which differ slightly but significantly between the two crystallographically independent molecules. When compared with other adenylate kinase structures, the chain fold is similar but the observed domain arrangement differs grossly, suggesting that large parts of the enzyme move during catalysis. The observed binding site of AMP is described. Its location in conjunction with data from homologous proteins clarifies the nucleotide-binding sites of the adenylate kinases. Previous assignments of these sites derived from X-ray crystallographic and nuclear magnetic resonance analyses are discussed.
对来自牛心线粒体基质的腺苷酸激酶(EC 2.7.4.10)与底物AMP形成的复合物晶体进行了X射线衍射分析。通过多重同晶置换和溶剂扁平化方法,在3.0埃的分辨率下解析了晶体结构。不对称单元中有两个酶 - 底物分子。通过使用模拟退火的模型构建和精修,分辨率扩展至1.9埃。当前的R因子为28.4%。该模型给出了5 - 218位残基的主链轨迹。该酶可细分为三个结构域,在两个晶体学独立的分子中,它们的相对排列略有不同但差异显著。与其他腺苷酸激酶结构相比,链折叠相似,但观察到的结构域排列差异很大,这表明该酶的大部分在催化过程中会移动。描述了观察到的AMP结合位点。其位置结合同源蛋白的数据阐明了腺苷酸激酶的核苷酸结合位点。讨论了先前从X射线晶体学和核磁共振分析得出的这些位点的归属。