Laboratório de Planejamento e Desenvolvimento de Fármacos, Instituto de Ciências Exatas e Naturais, Universidade Federal do Pará, UFPA, Rua Augusto Corrêa, 01, Guamá CEP, 66075-110 Belém, PA, Brazil.
J Mol Model. 2011 Oct;17(10):2631-8. doi: 10.1007/s00894-011-0963-1. Epub 2011 Jan 25.
Plasmepsin (PM) II is one of four enzymes in the food vacuole of Plasmodium falciparum. It has become an attractive target for combating malaria through research regarding its importance in the P. falciparum metabolism and life cycle, making it the target of choice for structure-based drug design. This paper reports the results of hybrid quantum mechanics / molecular mechanics (QM/MM) molecular dynamics (MD) simulations employed to study the details of the interactions established between PM II and N-(3-{(2-benzo[1, 3]dioxol-5-yl-ethyl)[3-(1-methyl-3-oxo-1,3-dihydro-isoindol-2-yl) propionyl]-amino}-1-benzyl-2-(hydroxyl-propyl)-4-benzyloxy-3,5dimethoxy-benzamide (EH58), a well-known potent inhibitor for this enzyme. Electrostatic binding free energy and energy terms decomposition have been computed for PM II complexed with the EH58 inhibitor. The results reveal that there is a strong interaction between Asp34, Val78, Ser79, Tyr192 and Asp214 residues and the EH58 inhibitor. In addition, we have computed the potential of the mean force (PMF) profile in order to assign the protonation state of the two catalytic aspartates in PM II-EH58 complex. The results indicate that the protonation of Asp214 favors a stable active site structure, which is consistent with our electrostatic binding free energy calculation and with previous published works.
裂殖疟原虫食物泡中的裂殖体(PM)II 是四种酶之一。通过研究其在疟原虫代谢和生命周期中的重要性,PM II 已成为抗疟的一个有吸引力的靶标,这使其成为基于结构的药物设计的首选靶标。本文报告了混合量子力学/分子力学(QM/MM)分子动力学(MD)模拟的结果,用于研究 PM II 与 N-(3-{(2-苯并[1,3]二恶唑-5-基-乙基)[3-(1-甲基-3-氧代-1,3-二氢-异吲哚-2-基)丙酰基]-氨基}-1-苄基-2-(羟基-丙基)-4-苄氧基-3,5-二甲氧基-苯甲酰胺(EH58)之间建立的相互作用的细节,EH58 是该酶的一种已知有效的抑制剂。计算了静电结合自由能和能量项分解,以研究 PM II 与 EH58 抑制剂的复合物。结果表明,Asp34、Val78、Ser79、Tyr192 和 Asp214 残基与 EH58 抑制剂之间存在很强的相互作用。此外,我们还计算了平均力势(PMF)轮廓,以确定 PM II-EH58 复合物中两个催化天冬氨酸的质子化状态。结果表明,Asp214 的质子化有利于稳定的活性位点结构,这与我们的静电结合自由能计算和以前的发表作品一致。