Chinnasamy Sathishkumar, Chinnasamy Selvakkumar, Muthusamy Karthikeyan
a Department of Bioinformatics , Alagappa University , Karaikudi , Tamil Nadu , India and.
b Department of Microbiology , Faculty of Medicine, Misurata University , Misurata , Libya.
J Recept Signal Transduct Res. 2016;36(2):111-8. doi: 10.3109/10799893.2015.1056306. Epub 2015 Sep 30.
Phospholipase A2 (PLA2) is the most abundant protein found in snake venom. PLA2 induces a variety of pharmacological effects such as neurotoxicity, myotoxicity and cardiotoxicity as well as anticoagulant, hemolytic, anti-platelet, hypertensive, hemorrhagic and edema inducing effects. In this study, the three dimensional structure of PLA2 of Naja sputatrix (Malayan spitting cobra) was modeled by I-TASSER, SWISS-MODEL, PRIME and MODELLER programs. The best model was selected based on overall stereo-chemical quality. Further, molecular dynamics simulation was performed to know the stability of the modeled protein using Gromacs software. Average structure was generated during the simulation period of 10 ns. High throughput virtual screening was employed through different databases (Asinex, Hit finder, Maybridge, TOSLab and ZINC databases) against PLA2. The top seven compounds were selected based on the docking score and free energy binding calculations. These compounds were analyzed by quantum polarized ligand docking, induced fit docking and density functional theory calculation. Furthermore, the stability of lead molecules in the active site of PLA2 was employed by MD simulation. The results show that selected lead molecules were highly stable in the active site of PLA2.
磷脂酶A2(PLA2)是蛇毒中含量最丰富的蛋白质。PLA2可诱导多种药理作用,如神经毒性、肌毒性和心脏毒性,以及抗凝、溶血、抗血小板、高血压、出血和致水肿作用。在本研究中,通过I-TASSER、SWISS-MODEL、PRIME和MODELLER程序对马来喷毒眼镜蛇(Naja sputatrix)的PLA2三维结构进行建模。根据整体立体化学质量选择最佳模型。此外,使用Gromacs软件进行分子动力学模拟,以了解建模蛋白质的稳定性。在10 ns的模拟期内生成平均结构。通过不同数据库(Asinex、Hit finder、Maybridge、TOSLab和ZINC数据库)对PLA2进行高通量虚拟筛选。根据对接分数和自由能结合计算选择前七种化合物。通过量子极化配体对接、诱导契合对接和密度泛函理论计算对这些化合物进行分析。此外,通过分子动力学模拟研究先导分子在PLA2活性位点的稳定性。结果表明,所选先导分子在PLA2活性位点高度稳定。