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与碳酸酐酶II的磺酰胺结合口袋显著远离的二级相互作用会影响抑制剂的结合常数。

Secondary interactions significantly removed from the sulfonamide binding pocket of carbonic anhydrase II influence inhibitor binding constants.

作者信息

Boriack P A, Christianson D W, Kingery-Wood J, Whitesides G M

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia 19104-6323, USA.

出版信息

J Med Chem. 1995 Jun 23;38(13):2286-91. doi: 10.1021/jm00013a004.

Abstract

A series of competitive inhibitors of carbonic anhydrase II (CAII; EC 4.2.1.1) that consists of oligo(ethylene glycol) units attached to p-benzenesulfonamides with pendant amino acids, H2NSO2C6H4CONHCH2CH2OCH2CH2OCH2CH2NHCOCHRNH3+, have been synthesized and examined using competitive fluorescence assays. Three of the strongest inhibitors, designated EG3NH3+, EG3GlyNH3+, and EG3PheNH3+, have been studied by X-ray crystallographic methods at limiting resolutions of 1.9, 2.0, and 2.3 A, respectively. The sulfonamide-zinc binding modes and the association of the ethylene glycol linkers to the hydrophobic patch of the active site are similar in all three inhibitors. Differences in the values of Kd are therefore not due to differences in zinc coordination or to differences in the modes of enzyme-glycol association but instead appear to arise from interaction of the pendant amino acids with the surface of the protein. These pendant groups are, however, not sufficiently ordered to be visible in electron density maps. Thus, structural variations of inhibitors at locations distant from the primary binding (i.e., the sulfonamide group) site affect the overall binding affinities of inhibitors (e.g., Kd (EG3PheNH3+) = 14 nM as compared with Kd (EG3GluNH3+) = 100 nM).

摘要

一系列碳酸酐酶II(CAII;EC 4.2.1.1)竞争性抑制剂已被合成并通过竞争性荧光测定法进行检测,这些抑制剂由连接到对苯磺酰胺上的带有侧链氨基酸的聚乙二醇单元组成,即H2NSO2C6H4CONHCH2CH2OCH2CH2OCH2CH2NHCOCHRNH3+。三种最强的抑制剂,分别命名为EG3NH3+、EG3GlyNH3+和EG3PheNH3+,已通过X射线晶体学方法分别在1.9、2.0和2.3 Å的极限分辨率下进行了研究。在所有三种抑制剂中,磺酰胺-锌的结合模式以及乙二醇连接体与活性位点疏水区域的缔合情况相似。因此,解离常数(Kd)值的差异并非由于锌配位的差异或酶-二醇缔合模式的差异,而是似乎源于侧链氨基酸与蛋白质表面的相互作用。然而,这些侧链基团的有序性不足以在电子密度图中显现出来。因此,抑制剂在远离主要结合(即磺酰胺基团)位点处的结构变化会影响抑制剂的整体结合亲和力(例如,Kd(EG3PheNH3+)= 14 nM,而Kd(EG3GluNH3+)= 100 nM)。

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