药物重新定位发现抗内脏利什曼病的新型鸟氨酸脱羧酶抑制剂

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-04-24 DOI:10.1002/jmr.3021
Sabahat Yasmeen Sheikh, Waseem Ahmad Ansari, Firoj Hassan, Tabrez Faruqui, Mohammad Faheem Khan, Yusuf Akhter, Abdul Rahman Khan, Maqsood A. Siddiqui, Abdulaziz A. Al-Khedhairy, Malik Nasibullah
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引用次数: 4

摘要

内脏利什曼病(VL)由多诺瓦利什曼原虫(Ld)引起,大多数病例发生在巴西、东非和印度。VL的治疗是有限的,并且有许多不良反应。迫切需要开发更安全、更有效的药物。药物再利用是现有药物再利用的最佳方法之一。鸟氨酸脱羧酶(Ornithine decarboxylase, ODC)是多胺生物合成途径中针对L. donovani的重要靶点。在这项研究中,我们建立了ODC的三维结构模型,并对8630个锌数据库配体对利什曼原虫鸟氨酸脱羧酶(Ld ODC)进行了高通量虚拟筛选,根据它们的高结合分数选择了45个配体。通过分子对接模拟,选取前两个先导分子(头孢他林化石油和邻苯二甲酸酯)进行分子动力学(MD)模拟、密度泛函数理论(DFT)和分子力学广义出生表面积(MMGBSA)分析,进一步验证了上述结论。结果表明,头孢他林的结合亲和度分别为- 10.719和10.159 kcal/mol。在分子动力学模拟中发现,头孢他林化石油和邻苯二甲酸酯这两种先导化合物与目标ODC的对接配合物是稳定的。此外,对MMGBSA的分析表明,这些化合物具有较高的结合自由能。DFT分析表明,顶部铅分子比标准药物(喷他脒)活性更强。计算机实验结果表明,头孢他林、化石油和瑞米吉宁可能被认为是治疗VL的有效的ODC拮抗剂。
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Drug repositioning to discover novel ornithine decarboxylase inhibitors against visceral leishmaniasis

Visceral leishmaniasis (VL) is caused by Leishmania donovani (Ld), and most cases occur in Brazil, East Africa, and India. The treatment for VL is limited and has many adverse effects. The development of safer and more efficacious drugs is urgently needed. Drug repurposing is one of the best processes to repurpose existing drugs. Ornithine decarboxylase (ODC) is an important target against L. donovani in the polyamine biosynthesis pathway. In this study, we have modeled the 3D structure of ODC and performed high-throughput virtual screening of 8630 ZINC database ligands against Leishmania donovani ornithine decarboxylase (Ld ODC), selecting 45 ligands based on their high binding score. It is further validated through molecular docking simulation and the selection of the top two lead molecules (ceftaroline fosamil and rimegepant) for Molecular Dynamics (MD) simulation, Density functional theory (DFT), and molecular mechanics generalized born surface area (MMGBSA) analysis. The results showed that the binding affinities of ceftaroline fosamil, and rimegepant are, respectively, −10.719 and 10.159 kcal/mol. The docking complexes of the two lead compounds, ceftaroline fosamil, and rimegepant, with the target ODC, were found stable during molecular dynamics simulations. Furthermore, the analysis of MMGBSA revealed that these compounds had a high binding free energy. The DFT analysis showed that the top lead molecules were more reactive than the standard drug (pentamidine). In-silico findings demonstrated that ceftaroline fosamil, and rimegepant might be recognized as potent antagonists against ODC for the treatment of VL.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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