Bolognesi M, Pugliese L, Gatti G, Frigerio F, Coda A, Antolini L, Schnebli H P, Menegatti E, Amiconi G, Ascenzi P
Department of Genetics and Microbiology, University of Pavia, Italy.
J Mol Recognit. 1990 Aug;3(4):163-8. doi: 10.1002/jmr.300030405.
The crystal structure of the molecular complex formed by bovine alpha-chymotrypsin and the recombinant serine proteinase inhibitor eglin c from Hirudo medicinalis has been solved using monoclinic crystals of the complex, reported previously. Four circle diffractometer data at 3.0 A resolution were employed to determine the structure by molecular replacement techniques. Bovine alpha-chymotrypsin alone was used as the search model; it allowed us to correctly orient and translate the enzyme in the unit cell and to obtain sufficient electron density for positioning the eglin c molecule. After independent rigid body refinement of the two complex components, the molecular model yielded a crystallographic R factor of 0.39. Five iterative cycles of restrained crystallographic refinement and model building were conducted, gradually increasing resolution. The current R factor at 2.6 A resolution (diffractometer data) is 0.18. The model includes 56 solvent molecules. Eglin c binds to bovine alpha-chymotrypsin in a manner consistent with other known serine proteinase/inhibitor complex structures. The reactive site loop shows the expected conformation for productive binding and is in tight contact with bovine alpha-chymotrypsin between subsites P3 and P'2; Leu 451 acts as the P1 residue, located in the primary specificity S1 site of the enzyme. Hydrogen bonds equivalent to those observed in complexes of trypsin(ogen) with the pancreatic basic- and secretory-inhibitors are found around the scissile peptide bond.
利用先前报道的该复合物的单斜晶体,解析了牛α-胰凝乳蛋白酶与药用蛭重组丝氨酸蛋白酶抑制剂水蛭素c形成的分子复合物的晶体结构。采用3.0 Å分辨率的四圆衍射仪数据,通过分子置换技术确定结构。单独使用牛α-胰凝乳蛋白酶作为搜索模型;这使我们能够在晶胞中正确地定向和平移该酶,并获得足够的电子密度来定位水蛭素c分子。对复合物的两个组分进行独立刚体精修后,分子模型的晶体学R因子为0.39。进行了五个循环的约束晶体学精修和模型构建,逐步提高分辨率。目前在2.6 Å分辨率(衍射仪数据)下的R因子为0.18。该模型包括56个溶剂分子。水蛭素c以与其他已知丝氨酸蛋白酶/抑制剂复合物结构一致的方式与牛α-胰凝乳蛋白酶结合。反应位点环呈现出有效结合的预期构象,并在P3和P'2亚位点之间与牛α-胰凝乳蛋白酶紧密接触;Leu 451作为P1残基,位于该酶的主要特异性S1位点。在可裂解肽键周围发现了与胰蛋白酶(原)与胰腺碱性和分泌性抑制剂复合物中观察到的等效氢键。