Nakamura M, Tomoo K, Ishida T, Taguchi H, Tsuda Y, Okada Y, Okunomiya A, Wanaka K, Okamoto S
Osaka University of Pharmaceutical Sciences, Japan.
Biochem Biophys Res Commun. 1995 Aug 15;213(2):583-7. doi: 10.1006/bbrc.1995.2171.
The inhibitory mechanism of trans-4-aminomethylcyclohexanecarbonyl-L-phenyl-alanine-4-carbo xymethylanilide (1), a noncovalent serine protease inhibitor synthesized based on previous structure-activity studies, was clarified based on the X-ray crystal structure of the complex (2.2 A resolution, R = 0.175), where the amino group of the aminomethylcyclohexane moiety was bifurcately hydrogen-bonded to the carboxyl oxygens of Asp 189 side group (specificity pocket), and the hydrogen bonds of the cyclohexanecarbonyl oxygen to NHs of Gly 193 and Ser 195 residues (oxyanion hole) and of Phe NH to Ser 195 O gamma atom (catalytic triad) were observed. In contrast, the Phe benzene moiety and terminal carboxymethylanilide of 1 were not well located on the electron density map, suggesting the conformational freedom of these P1' and P2' sites at the binding pocket. Based on these insights, trans-4-aminomethylcyclohexanecarbonyl-4-nitro-L-phenylalanine-4-+ ++benzoylanilide (2) was designed, in which the P1' and P2' sites were modified so as to effectively interact with the amino acid residues of trypsin binding pocket via hydrogen bonding and van der Waals interactions, respectively. Consequently, 2 showed 40 times higher inhibitory activity against trypsin than 1.
基于前期构效关系研究合成的非共价丝氨酸蛋白酶抑制剂反式-4-氨甲基环己烷甲酰基-L-苯丙氨酸-4-羧甲基苯胺(1),根据复合物的X射线晶体结构(分辨率2.2 Å,R = 0.175)阐明了其抑制机制。在该结构中,氨甲基环己烷部分的氨基与天冬氨酸189侧链基团(特异性口袋)的羧基氧形成分叉氢键,同时观察到环己烷甲酰基氧与甘氨酸193和丝氨酸195残基的氨基(氧阴离子洞)以及苯丙氨酸氨基与丝氨酸195的Oγ原子(催化三联体)之间形成氢键。相比之下,1的苯丙氨酸苯环部分和末端羧甲基苯胺在电子密度图上定位不佳,表明结合口袋处这些P1'和P2'位点具有构象自由度。基于这些见解,设计了反式-4-氨甲基环己烷甲酰基-4-硝基-L-苯丙氨酸-4-苯甲酰苯胺(2),其中P1'和P2'位点分别经过修饰,以便通过氢键和范德华相互作用与胰蛋白酶结合口袋的氨基酸残基有效相互作用。结果,2对胰蛋白酶的抑制活性比1高40倍。