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抑制剂与碳酸酐酶II和IV结合过程中同工酶选择性的结构方面

Structural aspects of isozyme selectivity in the binding of inhibitors to carbonic anhydrases II and IV.

作者信息

Kim Chu-Young, Whittington Douglas A, Chang Jeanne S, Liao John, May Jesse A, Christianson David W

机构信息

Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104-6323, USA.

出版信息

J Med Chem. 2002 Feb 14;45(4):888-93. doi: 10.1021/jm010163d.

Abstract

Carbonic anhydrase inhibitors are effective in lowering intraocular pressure, the primary indication of glaucoma. Human carbonic anhydrase II, and possibly carbonic anhydrase IV (CAII and CAIV, respectively), help regulate fluid secretion into the anterior chamber of the eye. Because inhibitors currently formulated as drugs to treat glaucoma were designed to target CAII, an understanding of the structural basis of CAII-CAIV discrimination by inhibitors would be useful for probing the role of each isozyme in the etiology of the disease. Here, we report the X-ray crystal structures of three novel thieno[3,2-e]-1,2-thiazine-6-sulfonamides complexed with CAII and the computationally predicted structures of the same compounds complexed with CAIV. All three compounds bind with similar affinity to CAII, but they bind with up to 100-fold lower affinities to CAIV. Comparisons of experimentally determined structures of CAII-inhibitor complexes and computationally predicted structures of CAIV-inhibitor complexes allow us to rationalize these affinity trends and outline molecular features that may contribute to high-affinity inhibitor binding to CAIV. This study demonstrates how experimental structure determination methods and computational structure prediction methods can be used together to answer questions that cannot be answered by either method alone.

摘要

碳酸酐酶抑制剂在降低眼压方面有效,而眼压升高是青光眼的主要指征。人碳酸酐酶II以及可能的碳酸酐酶IV(分别为CAII和CAIV)有助于调节眼房水的分泌。由于目前作为治疗青光眼的药物制剂设计用于靶向CAII,因此了解抑制剂区分CAII和CAIV的结构基础将有助于探究每种同工酶在该疾病病因中的作用。在此,我们报道了三种新型噻吩并[3,2-e]-1,2-噻嗪-6-磺酰胺与CAII复合的X射线晶体结构以及相同化合物与CAIV复合的计算预测结构。所有三种化合物与CAII的结合亲和力相似,但它们与CAIV的结合亲和力低至100倍。通过比较CAII-抑制剂复合物的实验测定结构和CAIV-抑制剂复合物的计算预测结构,我们能够解释这些亲和力趋势,并概述可能有助于高亲和力抑制剂与CAIV结合的分子特征。这项研究展示了如何将实验结构测定方法和计算结构预测方法结合起来,以回答单独使用任何一种方法都无法回答的问题。

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