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探索药物-受体相互作用的微妙之处:以基质金属蛋白酶为例。

Exploring the subtleties of drug-receptor interactions: the case of matrix metalloproteinases.

作者信息

Bertini Ivano, Calderone Vito, Fragai Marco, Giachetti Andrea, Loconte Mauro, Luchinat Claudio, Maletta Massimiliano, Nativi Cristina, Yeo Kwon Joo

机构信息

Magnetic Resonance Center (CERM), University of Florence, Via L. Sacconi 6, 50019 Sesto Fiorentino, Italy.

出版信息

J Am Chem Soc. 2007 Mar 7;129(9):2466-75. doi: 10.1021/ja065156z. Epub 2007 Feb 2.

Abstract

By solving high-resolution crystal structures of a large number (14 in this case) of adducts of matrix metalloproteinase 12 (MMP12) with strong, nanomolar, inhibitors all derived from a single ligand scaffold, it is shown that the energetics of the ligand-protein interactions can be accounted for directly from the structures to a level of detail that allows us to rationalize for the differential binding affinity between pairs of closely related ligands. In each case, variations in binding affinities can be traced back to slight improvements or worsening of specific interactions with the protein of one or more ligand atoms. Isothermal calorimetry measurements show that the binding of this class of MMP inhibitors is largely enthalpy driven, but a favorable entropic contribution is always present. The binding enthalpy of acetohydroxamic acid (AHA), the prototype zinc-binding group in MMP drug discovery, has been also accurately measured. In principle, this research permits the planning of either improved inhibitors, or inhibitors with improved selectivity for one or another MMP. The present analysis is applicable to any drug target for which structural information on adducts with a series of homologous ligands can be obtained, while structural information obtained from in silico docking is probably not accurate enough for this type of study.

摘要

通过解析大量(在这种情况下为14个)基质金属蛋白酶12(MMP12)与均源自单一配体支架的强纳摩尔级抑制剂的加合物的高分辨率晶体结构,结果表明,配体 - 蛋白质相互作用的能量学可以直接从结构中得到解释,其详细程度使我们能够合理化密切相关配体对之间的差异结合亲和力。在每种情况下,结合亲和力的变化都可以追溯到一个或多个配体原子与蛋白质的特定相互作用的轻微改善或恶化。等温滴定量热法测量表明,这类MMP抑制剂的结合在很大程度上是由焓驱动的,但有利的熵贡献总是存在的。乙酰氧肟酸(AHA)作为MMP药物发现中的原型锌结合基团,其结合焓也已被精确测量。原则上,这项研究允许设计出改进的抑制剂,或对一种或另一种MMP具有更高选择性的抑制剂。本分析适用于任何能够获得与一系列同源配体加合物结构信息的药物靶点,而从计算机对接获得的结构信息可能对于这类研究来说不够准确。

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