Suguna K, Bott R R, Padlan E A, Subramanian E, Sheriff S, Cohen G H, Davies D R
Laboratory of Molecular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, MD 20892.
J Mol Biol. 1987 Aug 20;196(4):877-900. doi: 10.1016/0022-2836(87)90411-6.
The structure of rhizopuspepsin (EC 3.4.23.6), the aspartic proteinase from Rhizopus chinensis, has been refined to a crystallographic R-factor of 0.143 at 1.8 A resolution. The positions of 2417 protein atoms have been determined with a root-mean-square (r.m.s.) error of 0.12 A. In the final model, the r.m.s. deviation from ideality for bond distances is 0.010 A, and for angle distances it is 0.034 A. During the course of the refinement, a calcium ion and 373 water molecules, of which 17 are internal, have been located. The active aspartate residues, Asp35 and Asp218, are involved in similar hydrogen-bonding interactions with neighboring residues and with several water molecules. One water molecule is located between the two carboxyl groups of the catalytic aspartate residues in a tightly hydrogen-bonded position. The refinement resulted in an unambiguous interpretation of the highly mobile "flap", a beta-hairpin loop region that projects over the binding pocket. Large solvent channels are formed when the molecules pack in the crystal, exposing the binding pocket and making it easily accessible. Intermolecular contacts involve mainly solvent molecules and a few protein atoms. The three-dimensional structure of rhizopuspepsin closely resembles other aspartic proteinase structures. A detailed comparison with the structure of penicillopepsin showed striking similarities as well as subtle differences in the active site geometry and molecular packing.
华根霉胃蛋白酶(EC 3.4.23.6)是来自华根霉的天冬氨酸蛋白酶,其结构已被精修至1.8埃分辨率下晶体学R因子为0.143。已确定2417个蛋白质原子的位置,其均方根(r.m.s.)误差为0.12埃。在最终模型中,键长与理想值的均方根偏差为0.010埃,键角与理想值的均方根偏差为0.034埃。在精修过程中,已定位了一个钙离子和373个水分子,其中17个为内部水分子。活性天冬氨酸残基Asp35和Asp218与相邻残基及几个水分子参与了类似的氢键相互作用。一个水分子位于催化天冬氨酸残基的两个羧基之间,处于紧密的氢键结合位置。精修结果对高度灵活的“瓣片”(一个伸向结合口袋上方的β-发夹环区域)做出了明确阐释。当分子在晶体中堆积时形成了大的溶剂通道,使结合口袋暴露且易于接近。分子间接触主要涉及溶剂分子和少数蛋白质原子。华根霉胃蛋白酶的三维结构与其他天冬氨酸蛋白酶结构非常相似。与青霉胃蛋白酶结构的详细比较显示,在活性位点几何形状和分子堆积方面既有显著相似之处,也有细微差异。