Housset D, Kim K S, Fuchs J, Woodward C, Wlodawer A
Macromolecular Structure Laboratory, NCI-Frederick Cancer Research and Development Center, MD 21702.
J Mol Biol. 1991 Aug 5;220(3):757-70. doi: 10.1016/0022-2836(91)90115-m.
The structure of a Y35G mutant of bovine pancreatic trypsin inhibitor (BPTI) was solved by molecular replacement and was refined by both simulated annealing and restrained least-squares at 1.8 A resolution. The crystals belong to the space group P42212, with unit cell dimensions a = b = 46.75 A, c = 50.61 A. The final R-factor is 0.159 and the deviation from ideality for bond distances is 0.02 A. The structure of the mutant differs from that of the native protein, showing an overall root-mean-square (r.m.s.) difference of 1.86 A for main-chain atoms. However, the change is mostly localized in the two loops (respective r.m.s. values of 2.04 A and 3.93 A) and the C terminus (r.m.s. 6.79 A), while the core of the protein is well conserved (r.m.s. 0.45 A). The change in the loop regions can be clearly attributed to the mutation while the difference in the C terminus might be only due to a different crystal packing. Seventy water molecules were included in the model but only seven of them are shared with the native structure. Thermal parameters are showing a good correlation with those for the wild-type of BPTI.
通过分子置换解析了牛胰蛋白酶抑制剂(BPTI)Y35G突变体的结构,并在1.8 Å分辨率下通过模拟退火和约束最小二乘法进行了精修。晶体属于空间群P42212,晶胞参数a = b = 46.75 Å,c = 50.61 Å。最终的R因子为0.159,键长与理想值的偏差为0.02 Å。突变体的结构与天然蛋白质不同,主链原子的整体均方根(r.m.s.)差异为1.86 Å。然而,变化主要集中在两个环(各自的r.m.s.值为2.04 Å和3.93 Å)和C末端(r.m.s. 6.79 Å),而蛋白质的核心部分保守性良好(r.m.s. 0.45 Å)。环区域的变化可明确归因于突变,而C末端的差异可能仅由于不同的晶体堆积。模型中包含70个水分子,但其中只有7个与天然结构共用。热参数与野生型BPTI的热参数显示出良好的相关性。