Heinz D W, Priestle J P, Rahuel J, Wilson K S, Grütter M G
Pharmaceutical Division, Ciba-Geigy Ltd., Basel, Switzerland.
J Mol Biol. 1991 Jan 20;217(2):353-71. doi: 10.1016/0022-2836(91)90549-l.
The crystal structures of the complexes formed between subtilisin Novo and three inhibitors, eglin c, Arg45-eglin c and Lys53-eglin c have been determined using molecular replacement and difference Fourier techniques and refined at 2.4 A, 2.1 A, and 2.4 A resolution, respectively. The mutants Arg45-eglin c and Lys53-eglin c were constructed by site-directed mutagenesis in order to investigate the inhibitory specificity and stability of eglin c. Arg45-eglin became a potent trypsin inhibitor, in contrast to native eglin, which is an elastase inhibitor. This specificity change was rationalized by comparing the structures of Arg45-eglin and basic pancreatic trypsin inhibitor and their interactions with trypsin. The residue Arg53, which participates in a complex network of hydrogen bonds formed between the core and the binding loop of eglin c, was replaced with the shorter basic amino acid lysine in the mutant Lys53-eglin. Two hydrogen bonds with Thr44, located in the binding loop, can no longer be formed but are partially restored by a water molecule bound in the vicinity of Lys53. Eglin c in complexes with both subtilisin Novo and subtilisin Carlsberg was crystallized in two different space groups. Comparison of the complexes showed a rigid body rotation for the eglin c core of 11.5 degrees with respect to the enzyme, probably caused by different intermolecular contacts in both crystal forms.
利用分子置换和差值傅里叶技术测定了嗜热栖热菌蛋白酶Novo与三种抑制剂(依格林c、Arg45 -依格林c和Lys53 -依格林c)形成的复合物的晶体结构,并分别在2.4 Å、2.1 Å和2.4 Å分辨率下进行了精修。通过定点诱变构建了突变体Arg45 -依格林c和Lys53 -依格林c,以研究依格林c的抑制特异性和稳定性。与天然依格林(一种弹性蛋白酶抑制剂)不同,Arg45 -依格林c成为了一种有效的胰蛋白酶抑制剂。通过比较Arg45 -依格林c和碱性胰蛋白酶抑制剂的结构及其与胰蛋白酶的相互作用,解释了这种特异性变化。在突变体Lys53 -依格林中,参与依格林c核心与结合环之间形成的复杂氢键网络的残基Arg53被较短的碱性氨基酸赖氨酸取代。与位于结合环中的Thr44形成的两个氢键无法再形成,但通过结合在Lys53附近的一个水分子部分恢复。依格林c与嗜热栖热菌蛋白酶Novo和嗜热栖热菌蛋白酶Carlsberg形成的复合物在两个不同的空间群中结晶。复合物的比较显示,依格林c核心相对于酶有11.5度的刚体旋转,这可能是由两种晶体形式中不同的分子间接触引起的。