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从猴痘病毒中靶向 TMPK 的计算机分析:分子对接分析、密度泛函理论研究和分子动力学模拟分析。

In-silico targeting TMPK from monkey pox virus: Molecular docking analysis, density functional theory studies and molecular dynamic simulation analysis.

机构信息

Department of Life Science, School of Science, University of Management and Technology (UMT), Lahore, Pakistan.

出版信息

J Biomol Struct Dyn. 2023;41(24):14689-14701. doi: 10.1080/07391102.2023.2193998. Epub 2023 Mar 27.

Abstract

The World Health Organization (WHO) proclaimed the monkeypox epidemic a "public health emergency of worldwide significance" recently. The monkeypox virus is a member of the same Orthopoxvirus genus as the smallpox virus. Although smallpox medications are advised against monkeypox, no monkeypox-specific drugs are currently available. In the event of such an outbreak, in-silico medication identification is a practical and efficient strategy. As a result, we report a computational drug repurposing analysis to discover medicines that may be potential inhibitors of thymidylate kinase, a critical monkeypox viral enzyme. The target protein structure of the monkeypox virus was modeled using the vaccinia virus's homologous protein structure. Using molecular docking and density functional theory, we found 11 possible inhibitors of the monkeypox virus from an Asinex library of 261120 chemicals. The primary purpose of this in silico work is to find possible inhibitors of monkeypox viral proteins that can then be experimentally tested in order to develop innovative therapeutic medicines for monkeypox infection.Communicated by Ramaswamy H. Sarma.

摘要

世界卫生组织(WHO)最近宣布猴痘疫情为“具有全球意义的公共卫生紧急事件”。猴痘病毒属于正痘病毒属,与天花病毒同属一科。虽然不建议使用天花药物治疗猴痘,但目前尚无专门针对猴痘的药物。在这种情况下,基于计算机的药物再利用识别是一种实用且高效的策略。因此,我们报告了一项计算药物重新利用分析,以发现可能是胸苷酸激酶(一种关键的猴痘病毒酶)潜在抑制剂的药物。使用分子对接和密度泛函理论,我们从 Asinex 化学物质库中的 261120 种化学物质中发现了 11 种可能的猴痘病毒抑制剂。这项计算机研究的主要目的是寻找可能的猴痘病毒蛋白抑制剂,然后进行实验测试,以开发针对猴痘感染的创新治疗药物。Ramaswamy H. Sarma 通讯。

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