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基于结构的计算工具进行潜在非核苷类逆转录酶抑制剂的命中鉴定和药物重定位(第二部分)。

Hit identification and drug repositioning of potential non-nucleoside reverse transcriptase inhibitors by structure-based approach using computational tools (part II).

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, M.S. Ramaiah University of Applied Sciences, Bangalore, India.

Dept. of Pharmaceutics, Manipal College of Pharmaceutcal Sciences, Manipal Academy of Higher Education, Manipal, India.

出版信息

J Biomol Struct Dyn. 2020 Aug;38(13):3772-3789. doi: 10.1080/07391102.2019.1663263. Epub 2019 Sep 17.

Abstract

AIDS is a global infection involving several complications and its increasing prevalence every year has prioritized our study. Therapy associated with HIV has led to emergence of multidrug resistance and toxicity. Thus, the development of a potent, affordable and safe anti-HIV drug is a global concern. Among the different targets developed, inhibition of non-nucleoside reverse transcriptase (NNRT) is found to be effective and promising. Etravirine, efavirenz, nevirapine, rilpivirine and delavirdine are the marketed NNRTIs available. This study is focused on computational prediction of hit molecules as well as repurposing of various FDA-approved drugs as potential NNRTIs. A synthetic database from ZINCpharmer, publicly available natural databases of coumarins, chromones and chalcones, and two databases of FDA-approved drugs for repurposing were screened to check for the possibility of these compounds to possess anti-HIV activity. Study utilizes a structure-based approach with the generated pharmacophore of target protein (PDB ID: 3MEC), screening of selected datasets is carried out using the Phase tool of Schrodinger. The top filtered compounds with good fitness score were proceeded to molecular docking studies to study their binding affinity to the target. Energy-based calculations using Prime MM-GBSA of Schrodinger was performed to determine free binding energy of the complexes. Prediction of pharmacokinetic parameters of top compounds is further carried out and reported. All the results obtained from different databases are compiled, interpreted and five molecules were subjected to molecular dynamic studies to further confirm the prediction and identified hit molecules for screening as potential NNRTIs.Communicated by Ramaswamy H. Sarma.

摘要

艾滋病是一种全球性的感染病,涉及多种并发症,其发病率逐年上升,这使我们的研究成为当务之急。与 HIV 相关的治疗导致了多药耐药性和毒性的出现。因此,开发一种有效且安全的抗 HIV 药物是全球关注的焦点。在已开发的不同靶点中,抑制非核苷类逆转录酶(NNRT)被证明是有效且有前途的。依曲韦林、依法韦仑、奈韦拉平、利匹韦林和地拉韦啶是已上市的 NNRTIs。本研究专注于计算预测潜在的命中分子以及将各种已批准的 FDA 药物重新用于作为潜在的 NNRTIs。从 ZINCpharmer 筛选出一个合成数据库,从公共可用的香豆素、色酮和查耳酮天然数据库,以及用于重新定位的两个 FDA 批准药物数据库中筛选出这些化合物是否可能具有抗 HIV 活性的可能性。研究利用基于结构的方法,使用目标蛋白的生成药效团(PDB ID:3MEC),使用 Schrodinger 的 Phase 工具筛选选定的数据集。具有良好拟合度的顶级过滤化合物进一步进行分子对接研究,以研究它们与目标的结合亲和力。使用 Schrodinger 的 Prime MM-GBSA 进行基于能量的计算,以确定复合物的自由结合能。进一步预测和报告顶级化合物的药代动力学参数。从不同数据库获得的所有结果都进行了编译、解释,然后将 5 种分子进行了分子动力学研究,以进一步确认预测并确定命中分子作为潜在的 NNRTIs 进行筛选。由 Ramaswamy H. Sarma 传达。

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