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通过计算机模拟方法深入了解肝片吸虫组织蛋白酶L3与底物及潜在新型抑制剂的相互作用

Insights into the Interactions of Fasciola hepatica Cathepsin L3 with a Substrate and Potential Novel Inhibitors through In Silico Approaches.

作者信息

Hernández Alvarez Lilian, Naranjo Feliciano Dany, Hernández González Jorge Enrique, Soares R O, Barreto Gomes Diego Enry, Pascutti Pedro Geraldo

机构信息

Departamento de Biología Molecular, Centro Nacional de Sanidad Agropecuaria de Cuba (CENSA), San José de las Lajas, Mayabeque, Cuba.

Centro de Estudios de Proteínas (CEP), Facultad de Biología, Universidad de la Habana, La Habana, Cuba.

出版信息

PLoS Negl Trop Dis. 2015 May 15;9(5):e0003759. doi: 10.1371/journal.pntd.0003759. eCollection 2015 May.

Abstract

BACKGROUND

Fasciola hepatica is the causative agent of fascioliasis, a disease affecting grazing animals, causing economic losses in global agriculture and currently being an important human zoonosis. Overuse of chemotherapeutics against fascioliasis has increased the populations of drug resistant parasites. F. hepatica cathepsin L3 is a protease that plays important roles during the life cycle of fluke. Due to its particular collagenolytic activity it is considered an attractive target against the infective phase of F. hepatica.

METHODOLOGY/PRINCIPAL FINDINGS: Starting with a three dimensional model of FhCL3 we performed a structure-based design of novel inhibitors through a computational study that combined virtual screening, molecular dynamics simulations, and binding free energy (ΔGbind) calculations. Virtual screening was carried out by docking inhibitors obtained from the MYBRIDGE-HitFinder database inside FhCL3 and human cathepsin L substrate-binding sites. On the basis of dock-scores, five compounds were predicted as selective inhibitors of FhCL3. Molecular dynamic simulations were performed and, subsequently, an end-point method was employed to predict ΔGbind values. Two compounds with the best ΔGbind values (-10.68 kcal/mol and -7.16 kcal/mol), comparable to that of the positive control (-10.55 kcal/mol), were identified. A similar approach was followed to structurally and energetically characterize the interface of FhCL3 in complex with a peptidic substrate. Finally, through pair-wise and per-residue free energy decomposition we identified residues that are critical for the substrate/ligand binding and for the enzyme specificity.

CONCLUSIONS/SIGNIFICANCE: The present study is the first computer-aided drug design approach against F. hepatica cathepsins. Here we predict the principal determinants of binding of FhCL3 in complex with a natural substrate by detailed energetic characterization of protease interaction surface. We also propose novel compounds as FhCL3 inhibitors. Overall, these results will foster the future rational design of new inhibitors against FhCL3, as well as other F. hepatica cathepsins.

摘要

背景

肝片吸虫是片形吸虫病的病原体,该病影响放牧动物,给全球农业造成经济损失,目前是一种重要的人类人畜共患病。过度使用抗片形吸虫病的化学疗法增加了耐药寄生虫的数量。肝片吸虫组织蛋白酶L3是一种蛋白酶,在吸虫的生命周期中起重要作用。由于其特殊的胶原分解活性,它被认为是针对肝片吸虫感染阶段的一个有吸引力的靶点。

方法/主要发现:从FhCL3的三维模型开始,我们通过结合虚拟筛选、分子动力学模拟和结合自由能(ΔGbind)计算的计算研究,对新型抑制剂进行了基于结构的设计。通过将从MYBRIDGE-HitFinder数据库获得的抑制剂对接在FhCL3和人组织蛋白酶L底物结合位点内进行虚拟筛选。根据对接分数,预测了五种化合物为FhCL3的选择性抑制剂。进行了分子动力学模拟,随后采用终点法预测ΔGbind值。鉴定出两种具有最佳ΔGbind值(-10.68千卡/摩尔和-7.16千卡/摩尔)的化合物,与阳性对照(-10.55千卡/摩尔)相当。采用类似的方法从结构和能量上表征FhCL3与肽底物复合物的界面。最后,通过成对和逐个残基的自由能分解,我们确定了对底物/配体结合和酶特异性至关重要的残基。

结论/意义:本研究是针对肝片吸虫组织蛋白酶的首次计算机辅助药物设计方法。在这里,我们通过对蛋白酶相互作用表面的详细能量表征,预测了FhCL3与天然底物结合的主要决定因素。我们还提出了新型化合物作为FhCL3抑制剂。总体而言,这些结果将促进未来针对FhCL3以及其他肝片吸虫组织蛋白酶的新型抑制剂的合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c61f/4433193/6bb58fa78b5c/pntd.0003759.g001.jpg

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