Department of Medicinal Chemistry, School of Pharmacy, University of Mississippi, University, Mississippi 38677, USA.
J Chem Inf Model. 2012 Mar 26;52(3):696-710. doi: 10.1021/ci2005516. Epub 2012 Feb 28.
Falcipains (FPs) are hemoglobinases of Plasmodium falciparum that are validated targets for the development of antimalarial chemotherapy. A combined ligand- and structure-based virtual screening of commercial databases was performed to identify structural analogs of virtual screening hits previously discovered in our laboratory. A total of 28 low micromolar inhibitors of FP-2 and FP-3 were identified and the structure-activity relationship (SAR) in each series was elaborated. The SAR of the compounds was unusually steep in some cases and could not be explained by a traditional analysis of the ligand-protein interactions (van der Waals, electrostatics, and hydrogen bonds). To gain further insights, a statistical thermodynamic analysis of explicit solvent in the ligand binding domains of FP-2 and FP-3 was carried out to understand the roles played by water molecules in binding of these inhibitors. Indeed, the energetics associated with the displacement of water molecules upon ligand binding explained some of the complex trends in the SAR. Furthermore, low potency of a subset of FP-2 inhibitors that could not be understood by the water energetics was explained in the context of poor chemical reactivity of the reactive centers of these compounds. The present study highlights the importance of considering energetic contributors to binding beyond traditional ligand-protein interactions.
疟原虫裂殖体蛋白(FPs)是疟原虫的血红蛋白酶,是开发抗疟化疗药物的有效靶点。对商业数据库进行了基于配体和结构的联合虚拟筛选,以鉴定我们实验室先前发现的虚拟筛选命中的结构类似物。总共鉴定出 28 种对 FP-2 和 FP-3 的低微摩尔抑制剂,并详细阐述了每个系列的结构活性关系(SAR)。在某些情况下,化合物的 SAR 异常陡峭,无法通过对配体-蛋白质相互作用(范德华力、静电和氢键)的传统分析来解释。为了获得更深入的了解,对 FP-2 和 FP-3 的配体结合域中的显式溶剂进行了统计热力学分析,以了解水分子在这些抑制剂结合中所起的作用。事实上,配体结合时水分子置换的能量学解释了 SAR 中的一些复杂趋势。此外,在配体结合时水分子的置换的能量学无法解释的一组 FP-2 抑制剂的低效力,在这些化合物的反应中心的不良化学反应性的背景下得到了解释。本研究强调了在考虑配体-蛋白质相互作用之外的结合能贡献的重要性。