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首页> 外文期刊>Tropical Journal of Pharmaceutical Research >Molecular Dynamics and Docking of Biphenyl: A Potential Attachment Inhibitor for HIV-1 gp120 Glycoprotein
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Molecular Dynamics and Docking of Biphenyl: A Potential Attachment Inhibitor for HIV-1 gp120 Glycoprotein

机译:分子动力学和联苯的对接:HIV-1 gp120糖蛋白的潜在附着抑制剂。

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Purpose: To develop a new drug that inhibits viral attachment and entry for the treatment of HIV/AIDS patients. Methods: Two Protein Databank (PDB) crystal structures of HIV-1 gp120-CD4 complexes, namely, 1RZK and 1G9N, were mutated at amino acid position 43 to a biphenylalanine (biPhe-43) residue. FireDock web server was used for the docking experiments and 5ns molecular dynamics (MD) using Gromacs 4.0 was performed on the protein complexes to verify the docking results based on the Gibbs free binding energies. Results: Molecular docking by FireDock web server showed that biPhe-43 and Trp-43-mutated CD4 inhibited the binding of gp120 more efficiently, -113.8 and -101.7 kJ/mol (SD = 0, n = 3), respectively, than the alternate aromatic wild type amino acid Phe-43 and the mutant His-43 and Tyr-43. FireDock revealed that electrostatic and Van der Waals interactions were mainly involved in the CD4-gp120 binding and helped to stabilize the protein interactions. In a 5ns MD simulation, biPhe-43 and Trp-43 mutated CD4 demonstrated best Gibbs free binding energies (-16271 ± 29 and -16266 ± 18 kJ/mol, respectively) to gp120 in the identification and confirmation of biPhe-43 and Trp-43 mutated CD4 as excellent inhibitors to gp120. Conclusion: The docked energies and probability outcomes by FireDock anticipated that a ligand for an efficient inhibition of HIV gp120 should involve an extended but conformational flexible aromatic group, i.e. a biphenyl.
机译:目的:开发一种抑制病毒附着和进入的新药,用于治疗HIV / AIDS患者。方法:将HIV-1 gp120-CD4复合物的两个蛋白质数据库(PDB)晶体结构,即1RZK和1G9N,在氨基酸位置43突变为联苯丙氨酸(biPhe-43)残基。 FireDock Web服务器用于对接实验,并使用Gromacs 4.0对蛋白质复合物进行了5ns分子动力学(MD),以基于Gibbs自由结合能验证对接结果。结果:通过FireDock Web服务器进行分子对接表明,与之相比,biPhe-43和Trp-43突变的CD4更有效地抑制gp120的结合,分别为-113.8和-101.7 kJ / mol(SD = 0,n = 3)。芳香族野生型氨基酸Phe-43和突变体His-43和Tyr-43。 FireDock揭示静电和范德华相互作用主要与CD4-gp120结合有关,并有助于稳定蛋白质相互作用。在5ns MD模拟中,biPhe-43和Trp-43突变的CD4在鉴定和确认biPhe-43和Trp方面表现出与gp120最佳的Gibbs自由结合能(分别为-16271±29和-16266±18 kJ / mol)。 -43突变的CD4是gp120的优异抑制剂。结论:FireDock对接的能量和概率结果预期,有效抑制HIV gp120的配体应包含一个扩展的但构象灵活的芳香族基团,即联苯。

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