Hammerschmidt Stefan J, Huber Simon, Braun Niklas J, Lander Marc, Steinmetzer Torsten, Kersten Christian
Institute of Pharmaceutical and Biomedical Sciences, Johannes Gutenberg-University, Mainz, Germany.
Institute of Pharmaceutical Chemistry, Philipps-University, Marburg, Germany.
Arch Pharm (Weinheim). 2023 Apr;356(4):e2200518. doi: 10.1002/ardp.202200518. Epub 2022 Dec 8.
Cyclization of small molecules is a widely applied strategy in drug design for ligand optimization to improve affinity, as it eliminates the putative need for structural preorganization of the ligand before binding, or to improve pharmacokinetic properties. In this work, we provide a deeper insight into the binding thermodynamics of a macrocyclic Zika virus NS2B/NS3 protease inhibitor and its linear analogs. Characterization of the thermodynamic binding profiles by isothermal titration calorimetry experiments revealed an unfavorable entropy of the macrocycle compared to the open linear reference ligands. Molecular dynamic simulations and X-ray crystal structure analysis indicated only minor benefits from macrocyclization to fixate a favorable conformation, while linear ligands retained some flexibility even in the protein-bound complex structure, possibly explaining the initially surprising effect of a higher entropic penalty for the macrocyclic ligand.
小分子环化是药物设计中广泛应用的一种策略,用于配体优化以提高亲和力,因为它消除了配体在结合前进行结构预组织的假定需求,或者改善药代动力学性质。在这项工作中,我们对一种大环寨卡病毒NS2B/NS3蛋白酶抑制剂及其线性类似物的结合热力学有了更深入的了解。通过等温滴定量热实验对热力学结合曲线进行表征,结果显示与开放的线性参考配体相比,大环的熵不利。分子动力学模拟和X射线晶体结构分析表明,大环化对固定有利构象的益处不大,而线性配体即使在与蛋白质结合的复合物结构中仍保留一些灵活性,这可能解释了大环配体具有较高熵罚的最初令人惊讶的效应。