Diederichs K, Schulz G E
Institut für Organische Chemie und Biochemie Freiburg, F.R.G.
J Mol Biol. 1991 Feb 5;217(3):541-9. doi: 10.1016/0022-2836(91)90756-v.
The crystal structure of the complex between adenylate kinase from bovine mitochondrial matrix and its substrate AMP has been refined at 1.85 A resolution (1 A = 0.1 nm). Based on 42,519 independent reflections of better than 10 A resolution, a final R-factor of 18.9% was obtained with a model obeying standard geometry within 0.016 A in bond lengths and 3.2 degrees in bond angles. There are two enzyme: substrate complexes in the asymmetric unit, each consisting of 226 amino acid residues, one AMP and one sulfate ion. A superposition of the two full-length polypeptides revealed deviations that can be described as small relative movements of three domains. Best superpositions of individual domains yielded a residual overall root-mean-square deviation of 0.3 A for the backbone atoms and 0.5 A for the sidechains. The final model contains 381 solvent molecules in the asymmetric unit, 2 x 72 = 144 of which occupy corresponding positions in both complexes.
牛线粒体基质中腺苷酸激酶与其底物AMP复合物的晶体结构已在1.85 Å分辨率(1 Å = 0.1 nm)下得到优化。基于42,519个分辨率优于10 Å的独立反射,对于一个键长在0.016 Å以内、键角在3.2度以内符合标准几何结构的模型,最终的R因子为18.9%。不对称单元中有两个酶-底物复合物,每个复合物由226个氨基酸残基、一个AMP和一个硫酸根离子组成。两条全长多肽的叠加显示出的偏差可描述为三个结构域的相对小移动。单个结构域的最佳叠加产生主链原子的残余总体均方根偏差为0.3 Å,侧链为0.5 Å。最终模型在不对称单元中包含381个溶剂分子,其中2×72 = 144个在两个复合物中占据相应位置。