Department of Biology, Faculty of Science, Golestan University, Gorgan, Iran.
Drug Chem Toxicol. 2021 Sep;44(5):470-479. doi: 10.1080/01480545.2019.1614022. Epub 2019 Oct 31.
One of the deadliest enzymes in the snake venom is l-amino acid oxidase (LAAO) which plays an important role in the pathophysiological effects during snake envenomation. Some effects of this enzyme on the human body are apoptosis, platelet aggregation, edema, hemorrhage, and cytotoxicity. Hence, inhibiting the enzyme activity to reduce its degradation effects is of great medical and pharmacological importance. On the other hand, drug repurposing is a process to find the new existing drug for a new medical indication. Since LAAO has no crystal structure in the protein data bank, first, its 3D structure was constructed by homology modeling using 1REO as the template and then modeled structure was evaluated by several algorithms. We screened the FDA-approved drugs by structure-based virtual screening, molecular dynamics (MD) simulation, and Molecular Mechanics Poisson Boltzmann Surface Area (MM/PBSA) to identify new inhibitors for the snake venom LAAO. Interestingly, docking results revealed that half of the hits belong to the propionic acid derivatives drugs. In addition, MD simulation was performed to assess the interaction profile of the docked protein-hits complexes. Meanwhile, Arg88, Gln112, Lys345, Trp356 form consistent hydrogen bond interactions with Dexketoprofen, Flurbiprofen, Ketoprofen, Morphine, and Citric acid during simulation. According to the results, each of the four compounds can be an appropriate inhibitor of LAAO and since our study was based on drug repurposing could be evaluated in phase II clinical trials.
蛇毒中最致命的酶之一是 L-氨基酸氧化酶(LAAO),它在蛇毒中毒的病理生理效应中起着重要作用。该酶对人体的一些影响包括细胞凋亡、血小板聚集、水肿、出血和细胞毒性。因此,抑制酶活性以减少其降解作用具有重要的医学和药理学意义。另一方面,药物再利用是寻找新的现有药物用于新的医疗适应症的过程。由于 LAAO 在蛋白质数据库中没有晶体结构,首先使用 1REO 作为模板通过同源建模构建其 3D 结构,然后使用几种算法对模型结构进行评估。我们通过基于结构的虚拟筛选、分子动力学(MD)模拟和分子力学泊松-玻尔兹曼表面积(MM/PBSA)筛选 FDA 批准的药物,以鉴定用于蛇毒 LAAO 的新型抑制剂。有趣的是,对接结果表明,有一半的命中属于丙酸衍生物药物。此外,还进行了 MD 模拟以评估对接蛋白-命中复合物的相互作用谱。同时,Arg88、Gln112、Lys345 和 Trp356 在模拟过程中与 Dexketoprofen、Flurbiprofen、Ketoprofen、Morphine 和柠檬酸形成一致的氢键相互作用。根据结果,这四种化合物中的每一种都可以成为 LAAO 的合适抑制剂,并且由于我们的研究基于药物再利用,可以在 II 期临床试验中进行评估。