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通过对接、分子动力学、从头算和 MM/PBSA 计算研究新型 cruzain 抑制剂的结合模式。

Investigation of the binding mode of a novel cruzain inhibitor by docking, molecular dynamics, ab initio and MM/PBSA calculations.

机构信息

Laboratório de Modelagem Molecular e Planejamento de Fármacos, Departamento de Bioquímica e Imunologia, Universidade Federal de Minas Gerais, Av. Antônio Carlos, 6627, Belo Horizonte, MG, CEP 31270-901, Brazil.

Laboratório de Química Farmacêutica, Departamento de Produtos Farmacêuticos, Faculdade de Farmácia, Universidade Federal de Minas Gerais, Av. Antônio Carlos, 6627, Belo Horizonte, MG, CEP 31270-901, Brazil.

出版信息

J Comput Aided Mol Des. 2018 May;32(5):591-605. doi: 10.1007/s10822-018-0112-3. Epub 2018 Mar 21.

Abstract

Chagas disease remains a major health problem in South America, and throughout the world. The two drugs clinically available for its treatment have limited efficacy and cause serious adverse effects. Cruzain is an established therapeutic target of Trypanosoma cruzi, the protozoan that causes Chagas disease. Our group recently identified a competitive cruzain inhibitor (compound 1) with an IC = 15 µM that is also more synthetically accessible than the previously reported lead, compound 2. Prior studies, however, did not propose a binding mode for compound 1, hindering understanding of the structure-activity relationship and optimization. Here, the cruzain binding mode of compound 1 was investigated using docking, molecular dynamics (MD) simulations with ab initio derived parameters, ab initio calculations, and MM/PBSA. Two ligand protonation states and four binding poses were evaluated. A careful ligand parameterization method was employed to derive more physically meaningful parameters than those obtained by automated tools. The poses of unprotonated 1 were unstable in MD, showing large conformational changes and diffusing away from the binding site, whereas the protonated form showed higher stability and interaction with negatively charged residues Asp161 and Cys25. MM/PBSA also suggested that these two residues contribute favorably to binding of compound 1. By combining results from MD, ab initio calculations, and MM/PBSA, a binding mode of 1 is proposed. The results also provide insights for further optimization of 1, an interesting lead compound for the development of new cruzain inhibitors.

摘要

克氏锥虫病仍然是南美洲和全世界的一个主要卫生问题。用于治疗该病的两种临床药物疗效有限,并会引起严重的不良反应。克氏锥虫 cruzain 是导致克氏锥虫病的原生动物的既定治疗靶点。我们的研究小组最近发现了一种具有竞争性的 cruzain 抑制剂(化合物 1),其 IC50 值为 15 μM,比之前报道的先导化合物 2 更具合成可及性。然而,先前的研究并未提出化合物 1 的结合模式,这阻碍了对结构-活性关系和优化的理解。在这里,我们使用对接、基于从头算的分子动力学 (MD) 模拟、从头算计算和 MM/PBSA 研究了化合物 1 与 cruzain 的结合模式。评估了两种配体的质子化状态和四个结合构象。采用了一种精细的配体参数化方法,以获得比自动工具获得的更有物理意义的参数。在 MD 中,未质子化 1 的构象不稳定,显示出较大的构象变化并从结合部位扩散开,而质子化形式则显示出更高的稳定性和与带负电荷的残基 Asp161 和 Cys25 的相互作用。MM/PBSA 还表明这两个残基有利于化合物 1 的结合。通过将 MD、从头算计算和 MM/PBSA 的结果相结合,提出了 1 的结合模式。这些结果还为进一步优化 1 提供了思路,1 是开发新型 cruzain 抑制剂的一个有趣的先导化合物。

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