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功能基团贡献在蛋白质-配体结合中不具有加和性:晶体学和等温热滴定法的综合研究。

Non-additivity of functional group contributions in protein-ligand binding: a comprehensive study by crystallography and isothermal titration calorimetry.

机构信息

Department of Pharmaceutical Chemistry, Philipps-University Marburg, Marbacher Weg 6, 35032 Marburg, Germany.

出版信息

J Mol Biol. 2010 Apr 9;397(4):1042-54. doi: 10.1016/j.jmb.2010.02.007. Epub 2010 Feb 12.

Abstract

Additivity of functional group contributions to protein-ligand binding is a very popular concept in medicinal chemistry as the basis of rational design and optimized lead structures. Most of the currently applied scoring functions for docking build on such additivity models. Even though the limitation of this concept is well known, case studies examining in detail why additivity fails at the molecular level are still very scarce. The present study shows, by use of crystal structure analysis and isothermal titration calorimetry for a congeneric series of thrombin inhibitors, that extensive cooperative effects between hydrophobic contacts and hydrogen bond formation are intimately coupled via dynamic properties of the formed complexes. The formation of optimal lipophilic contacts with the surface of the thrombin S3 pocket and the full desolvation of this pocket can conflict with the formation of an optimal hydrogen bond between ligand and protein. The mutual contributions of the competing interactions depend on the size of the ligand hydrophobic substituent and influence the residual mobility of ligand portions at the binding site. Analysis of the individual crystal structures and factorizing the free energy into enthalpy and entropy demonstrates that binding affinity of the ligands results from a mixture of enthalpic contributions from hydrogen bonding and hydrophobic contacts, and entropic considerations involving an increasing loss of residual mobility of the bound ligands. This complex picture of mutually competing and partially compensating enthalpic and entropic effects determines the non-additivity of free energy contributions to ligand binding at the molecular level.

摘要

功能基团贡献对蛋白质-配体结合的加和性是药物化学中一个非常流行的概念,是合理设计和优化先导结构的基础。目前用于对接的大多数评分函数都是基于这种加和模型。尽管这一概念的局限性是众所周知的,但仍很少有案例研究详细检查为什么加和性在分子水平上失效。本研究通过对一系列凝血酶抑制剂的晶体结构分析和等温热滴定法,表明在形成的复合物中,疏水接触和氢键形成之间的广泛协同作用通过动态特性紧密耦合。与凝血酶 S3 口袋表面形成最佳的疏水性接触,并使该口袋完全去溶剂化,可能与配体与蛋白质之间形成最佳氢键相冲突。竞争相互作用的相互贡献取决于配体疏水性取代基的大小,并影响结合部位配体部分的剩余迁移率。对单个晶体结构的分析和将自由能分解为焓和熵表明,配体的结合亲和力来自氢键和疏水接触的焓贡献的混合物,以及涉及结合配体的剩余迁移率逐渐丧失的熵考虑因素。这种相互竞争和部分补偿的焓和熵效应的复杂情况决定了分子水平上配体结合的自由能贡献的不可加性。

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