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蛋白质-配体识别的亲和力与选择性:微小化学修饰改变碳酸酐酶的结合模式。

Affinity and Selectivity of Protein-Ligand Recognition: A Minor Chemical Modification Changes Carbonic Anhydrase Binding Profile.

作者信息

Zakšauskas Audrius, Paketurytė-Latvė Vaida, Janku̅naitė Alberta, Čapkauskaitė Edita, Becart Yann, Smirnov Alexey, Pospíšilová Klára, Leitans Janis, Brynda Jiří, Kazaks Andris, Baranauskienė Lina, Manakova Elena, Gražulis Saulius, Kairys Visvaldas, Tars Kaspars, Řezáčová Pavlína, Matulis Daumantas

机构信息

Department of Biothermodynamics and Drug Design, Institute of Biotechnology, Life Sciences Center, Vilnius University, Saulėtekio al. 7, Vilnius LT-10257, Lithuania.

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo n. 2, Prague 6 16610, Czech Republic.

出版信息

J Med Chem. 2025 Aug 28;68(16):17752-17773. doi: 10.1021/acs.jmedchem.5c01421. Epub 2025 Aug 13.

Abstract

Discovery of small-molecule drugs relies on their strong binding affinity compared to nontarget proteins, thus possessing selectivity. Minor chemical structure changes usually exhibit little change in the compound efficacy, with rare exceptions. We developed a series of nearly 50 -substituted benzenesulfonamides and experimentally measured their interactions with the 12 catalytically active human carbonic anhydrase (CA) isozymes. Inhibitors were designed using seven different substituent groups, including 4--substituted 3-sulfamoyl benzoates and benzamides, 4--substituted 3-sulfamoyl benzoates and benzamides, 4--substituted 3-sulfamoyl benzoates and benzamides, and 4-amino-substituted benzamides. The oxidation state of sulfur at the position significantly influenced the compound's affinity for CAIX, a target for anticancer drugs, demonstrating affinities hundreds of thousands of times stronger than related compounds. Coupled with X-ray crystal structures and molecular docking, the relationship between structure and thermodynamics offers insights into how small changes in the structure lead to significant changes in affinity for drug design.

摘要

小分子药物的发现依赖于它们与非靶标蛋白相比具有的强结合亲和力,因此具有选择性。除了极少数例外情况,微小的化学结构变化通常对化合物的疗效影响很小。我们开发了一系列近50种取代苯磺酰胺,并通过实验测量了它们与12种具有催化活性的人碳酸酐酶(CA)同工酶的相互作用。抑制剂是使用七种不同的取代基设计的,包括4-取代的3-氨磺酰苯甲酸酯和苯甲酰胺、4-取代的3-氨磺酰苯甲酸酯和苯甲酰胺、4-取代的3-氨磺酰苯甲酸酯和苯甲酰胺,以及4-氨基取代的苯甲酰胺。β位硫的氧化态显著影响化合物对CAIX(一种抗癌药物靶点)的亲和力,其表现出的亲和力比相关化合物强数十万倍。结合X射线晶体结构和分子对接,结构与热力学之间的关系为结构的微小变化如何导致药物设计中亲和力的显著变化提供了见解。

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