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The Influence of Varying Fluorination Patterns on the Thermodynamics and Kinetics of Benzenesulfonamide Binding to Human Carbonic Anhydrase II

机译:氟化方式的变化对苯磺酰胺与人碳酸酐酶II结合的热力学和动力学的影响

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摘要

The fluorination of lead-like compounds is a common tool in medicinal chemistry to alter molecular properties in various ways and with different goals. We herein present a detailed study of the binding of fluorinated benzenesulfonamides to human Carbonic Anhydrase II by complementing macromolecular X-ray crystallographic observations with thermodynamic and kinetic data collected with the novel method of kinITC. Our findings comprise so far unknown alternative binding modes in the crystalline state for some of the investigated compounds as well as complex thermodynamic and kinetic structure-activity relationships. They suggest that fluorination of the benzenesulfonamide core is especially advantageous in one position with respect to the kinetic signatures of binding and that a higher degree of fluorination does not necessarily provide for a higher affinity or more favorable kinetic binding profiles. Lastly, we propose a relationship between the kinetics of binding and ligand acidity based on a small set of compounds with similar substitution patterns.
机译:铅状化合物的氟化是药物化学中以各种方式和不同目标改变分子性质的常用工具。我们在这里通过用大分子X射线晶体学观察与用kinITC的新方法收集的热力学和动力学数据互补,对氟化苯磺酰胺与人碳酸酐酶II的结合进行了详细研究。我们的发现包括迄今未知的某些被研究化合物的结晶态替代结合模式以及复杂的热力学和动力学结构-活性关系。他们认为,就结合的动力学特征而言,苯磺酰胺核心的氟化在一个位置上是特别有利的,并且更高的氟化度并不一定提供更高的亲和力或更有利的动力学结合特性。最后,我们基于少量具有相似取代模式的化合物,提出了结合动力学和配体酸度之间的关系。

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