Determination of binding affinities of some approved drugs to Ascaris suum mitochondrial rhodoquinol-fumarate reductase by in silico molecular docking

I. Uzochukwu, O. Olubiyi, CO Akpojotor
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引用次数: 4

Abstract

The binding affinity of a drug for a receptor describes how avidly the drug binds to the receptor. Drugreceptor binding determines the ability to produce a pharmacological response and to some extent the size of that response. The study investigated the binding affinities of some approved drugs to Ascaris suum  mitochondrial rhodoquinol-fumarate reductase(MRFR), an essential Ascaris enzyme, by in silico molecular docking simulations. Twenty eight approved drugs were carefully selected based on the possibility of their pharmacological action on Ascaris smooth muscles or antiparasitic activities. Selected drugs were obtained from ZINC ® database as mol2 files and further prepared for docking simulations using AutoDock tools v. 1.5.6. Ascaris MRFR was obtained as pdb file (3vra) from the Protein Data Bank and further prepared for docking simulations using both Chimera v. 1.8.1 and AutoDock tools v. 1.5.6. In order to validate the docking protocol, the binding of atpenin, an experimental anthelmintic compound, to MRFR was successfully reproduced in silico . Docking simulations were performed using AutoDockVina 4.0 on a Linux platform. Docking results were analyzed using PyMol v.0.99r c6. Molecular dynamics was employed for the validation of complexed frontrunner approved drugs. Binding free energies of -8.60, -7.75 and -7.50 kcal/mol were obtained for atovaquone, carvedilol and atpenin respectively. Zero binding free energies were recorded for tinidazole, piperazine, bithionol, thiabendazole and metronidazole. Molecular dynamics simulations of atovaquone and carvedilol complexed with the reductase enzyme revealed a strongly favourable binding with likely favourable entropic term in the case of carvedilol. Atovaquone and carvedilol were thus predicted as frontrunner approved drugs with possible anthelmintic activities comparable to atpenin. In vitro and in vivo investigations into the anthelmintic activities of atovaquone and carvedilol are recommended. Key-words : Ascaris, docking, molecular dynamics, anthelmintics, drug repurposing.
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硅分子对接法测定一些获批药物与猪蛔虫线粒体富马酸还原酶的结合亲和力
药物与受体的结合亲和力描述了药物与受体的结合程度。药物受体结合决定了产生药理学反应的能力,并在某种程度上决定了反应的大小。本研究通过硅分子对接模拟研究了一些获批药物与Ascaris suum线粒体富马酸rhodoquinol-fumarate reductase(MRFR)的结合亲和力,MRFR是Ascaris必不可少的酶。28种批准的药物是根据其对蛔虫平滑肌的药理作用或抗寄生虫活性的可能性精心选择的。从ZINC®数据库中获得选定的药物作为mol2文件,并使用AutoDock工具v. 1.5.6进行对接模拟。从蛋白质数据库中获得Ascaris MRFR为pdb文件(3vra),并使用Chimera v. 1.8.1和AutoDock工具v. 1.5.6进行对接模拟。为了验证对接方案,在硅中成功地复制了atpenin(一种实验性驱虫药化合物)与MRFR的结合。在Linux平台上使用AutoDockVina 4.0进行对接模拟。对接结果使用PyMol v.0.99r c6进行分析。采用分子动力学方法对已获批的复杂先导药物进行验证。阿托伐醌、卡维地洛和阿霉素的结合自由能分别为-8.60、-7.75和-7.50 kcal/mol。替硝唑、哌嗪、比硫醇、噻苯达唑和甲硝唑均记录了零结合自由能。对阿托伐醌和卡维地洛与还原酶络合的分子动力学模拟表明,卡维地洛具有很强的亲和性,并且可能具有有利的熵项。因此,阿托伐酮和卡维地洛被预测为领先的批准药物,可能具有与肾上腺素相当的驱虫活性。建议对阿托伐醌和卡维地洛的体内和体外驱虫活性进行研究。关键词:蛔虫,对接,分子动力学,驱虫药,药物再利用
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