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结构分析、多构象虚拟筛选和分子模拟鉴定针对非洲猪瘟病毒 pS273R 蛋白酶的潜在抑制剂。

Structural Analysis, Multi-Conformation Virtual Screening and Molecular Simulation to Identify Potential Inhibitors Targeting pS273R Proteases of African Swine Fever Virus.

机构信息

Key Laboratory of Livestock Infectious Diseases, Ministry of Education, Shenyang Agricultural University, No. 120, Dongling Road, Shenhe District, Shenyang 110866, China.

The Preventive and Control Center of Animal Disease of Liaoning Province, Liaoning Agricultural Development Service Center, No. 95, Renhe Road, Shenbei District, Shenyang 110164, China.

出版信息

Molecules. 2023 Jan 6;28(2):570. doi: 10.3390/molecules28020570.

Abstract

The African Swine Fever virus (ASFV) causes an infectious viral disease in pigs of all ages. The development of antiviral drugs primarily aimed at inhibition of proteases required for the proteolysis of viral polyproteins. In this study, the conformation of the pS273R protease in physiological states were investigated, virtually screened the multi-protein conformation of pS273R target proteins, combined various molecular docking scoring functions, and identified five potential drugs from the Food and Drug Administration drug library that may inhibit pS273R. Subsequent validation of the dynamic interactions of pS273R with the five putative inhibitors was achieved using molecular dynamics simulations and binding free energy calculations using the molecular mechanics/Poison-Boltzmann (Generalized Born) (MM/PB(GB)SA) surface area. These findings demonstrate that the arm domain and Thr159-Lys167 loop region of pS273R are significantly more flexible compared to the core structural domain, and the Thr159-Lys167 loop region can serve as a "gatekeeper" in the substrate channel. Leucovorin, Carboprost, Protirelin, Flavin Mononucleotide, and Lovastatin Acid all have Gibbs binding free energies with pS273R that were less than -20 Kcal/mol according to the MM/PBSA analyses. In contrast to pS273R in the free energy landscape, the inhibitor and drug complexes of pS273R showed distinct structural group distributions. These five drugs may be used as potential inhibitors of pS273R and may serve as future drug candidates for treating ASFV.

摘要

非洲猪瘟病毒(ASFV)可引起所有年龄段猪的传染性病毒病。抗病毒药物的开发主要针对抑制病毒多蛋白水解所需的蛋白酶。在这项研究中,研究了生理状态下 pS273R 蛋白酶的构象,虚拟筛选了 pS273R 靶蛋白的多蛋白构象,结合了各种分子对接评分功能,并从美国食品和药物管理局药物库中鉴定出可能抑制 pS273R 的五种潜在药物。随后使用分子动力学模拟和使用分子力学/Poisson-Boltzmann(广义 Born)(MM/PB(GB)SA)表面积的结合自由能计算对 pS273R 与五种假定抑制剂的动态相互作用进行了验证。这些发现表明,与核心结构域相比,pS273R 的臂结构域和 Thr159-Lys167 环区域的柔性明显更高,并且 Thr159-Lys167 环区域可以作为底物通道中的“守门员”。叶酸、卡前列甲酯、普罗瑞林、黄素单核苷酸和洛伐他汀酸根据 MM/PBSA 分析,与 pS273R 的 Gibbs 结合自由能均小于-20 Kcal/mol。与自由能景观中的 pS273R 相比,pS273R 的抑制剂和药物复合物显示出明显不同的结构群分布。这五种药物可能被用作 pS273R 的潜在抑制剂,并可能成为未来治疗 ASFV 的候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1a4/9866604/92ebfe41ef05/molecules-28-00570-g001.jpg

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