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-5-脒基吲哚和苯甲脒与凝血酶和胰蛋白酶结合的比较分子模拟分析:特定氢键的形成有助于提高5-脒基吲哚对凝血酶和因子Xa的效力和选择性。

Comparative molecular modeling analysis of-5-amidinoindole and benzamidine binding to thrombin and trypsin: specific H-bond formation contributes to high 5-amidinoindole potency and selectivity for thrombin and factor Xa.

作者信息

Zhou Y, Johnson M E

机构信息

Center for Pharmaceutical Biotechnology and Department of Medicinal Chemistry and Pharmacognosy, University of Illinois at Chicago, 833 South Wood St (m/c 874), Chicago, IL 60612-7230, USA.

出版信息

J Mol Recognit. 1999 Jul-Aug;12(4):235-41. doi: 10.1002/(SICI)1099-1352(199907/08)12:4<235::AID-JMR460>3.0.CO;2-X.

Abstract

The coagulation cascade enzymes thrombin and factor Xa are known to have specificity pockets very similar to those of trypsin and plasmin. However, comparative molecular modeling analysis of the crystal structures of benzamidine-thrombin and benzamidine-trypsin, in conjunction with a docking analysis of 5-amidinoindole and related inhibitors in both enzymes reveals subtle differences between the specificity sites of the two types of enzymes. Specifically, thrombin and factor Xa, which have an alanine residue at position 190, exhibit increased activities for the rigid and more bulky bicyclic derivatives of benzamidine (e.g. amidinobenzofuran, amidinothiophene and amidinoindole), because of additional hydrophobic and H-bond interactions between the inhibitors and the specificity sites, whereas enzymes with a serine residue at position 190, like trypsin and plasmin, exhibit little difference in activity among the same set of compounds because of the orientational restriction imposed on the inhibitors by Ser190, which forms an additional H-bond with the amidino group of the inhibitors. Enzymes of both groups show similar responses to the flexible aminobenzamidine since the smaller size and the rotatable anilino group of the inhibitor would allow the inhibitor to achieve favorable electrostatic interactions with both groups of enzymes. 5-amidinoindole is the most dramatic example of the rigid bicyclic type inhibitor. Based on our docking analysis, we propose that a selective H-bond with the hydroxyl group of the catalytic Ser195 and the subtle differences in steric fit imposed by Ala/Ser at position 190 explain the high potency and selectivity of 5-amidinoindole for thrombin and factor Xa.

摘要

已知凝血级联酶凝血酶和因子Xa具有与胰蛋白酶和纤溶酶非常相似的特异性口袋。然而,对苯甲脒 - 凝血酶和苯甲脒 - 胰蛋白酶晶体结构的比较分子建模分析,结合对这两种酶中5 - 脒基吲哚及相关抑制剂的对接分析,揭示了这两种酶特异性位点之间的细微差异。具体而言,在第190位具有丙氨酸残基的凝血酶和因子Xa,对苯甲脒的刚性且更大的双环衍生物(如脒基苯并呋喃、脒基噻吩和脒基吲哚)表现出更高的活性,这是因为抑制剂与特异性位点之间存在额外的疏水和氢键相互作用;而在第190位具有丝氨酸残基的酶,如胰蛋白酶和纤溶酶,由于Ser190对抑制剂施加的取向限制,该残基与抑制剂的脒基形成额外的氢键,使得在同一组化合物中它们的活性差异不大。两组酶对柔性氨基苯甲脒的反应相似,因为抑制剂较小的尺寸和可旋转的苯胺基能够使其与两组酶都实现有利的静电相互作用。5 - 脒基吲哚是刚性双环型抑制剂的最典型例子。基于我们的对接分析,我们提出与催化性Ser195的羟基形成的选择性氢键以及第190位Ala/Ser所造成的空间适配细微差异,解释了5 - 脒基吲哚对凝血酶和因子Xa的高效力和选择性。

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