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In Silico Identification of Novel Aromatic Compounds as Potential HIV-1 Entry Inhibitors Mimicking Cellular Receptor CD4

机译:在计算机模拟中鉴定新型芳香化合物作为模仿细胞受体CD4的潜在HIV-1进入抑制剂

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摘要

Despite recent progress in the development of novel potent HIV-1 entry/fusion inhibitors, there are currently no licensed antiviral drugs based on inhibiting the critical interactions of the HIV-1 envelope gp120 protein with cellular receptor CD4. In this connection, studies on the design of new small-molecule compounds able to block the gp120-CD4 binding are still of great value. In this work, in silico design of drug-like compounds containing the moieties that make the ligand active towards gp120 was performed within the concept of click chemistry. Complexes of the designed molecules bound to gp120 were then generated by molecular docking and optimized using semiempirical quantum chemical method PM7. Finally, the binding affinity analysis of these ligand/gp120 complexes was performed by molecular dynamic simulations and binding free energy calculations. As a result, five top-ranking compounds that mimic the key interactions of CD4 with gp120 and show the high binding affinity were identified as the most promising CD4-mimemic candidates. Taken together, the data obtained suggest that these compounds may serve as promising scaffolds for the development of novel, highly potent and broad anti-HIV-1 therapeutics.
机译:尽管在开发新型有效的HIV-1进入/融合抑制剂方面取得了最新进展,但目前尚无基于抑制HIV-1包膜gp120蛋白与细胞受体CD4的关键相互作用的许可抗病毒药物。在这方面,对能够阻断gp120-CD4结合的新型小分子化合物的设计研究仍然具有重要的价值。在这项工作中,在点击化学的概念内进行了计算机模拟的药物样化合物的计算机设计,该化合物包含使配体对gp120具有活性的部分。然后,通过分子对接生成与gp120结合的设计分子的复合物,并使用半经验量子化学方法PM7对其进行优化。最后,通过分子动力学模拟和结合自由能计算对这些配体/ gp120复合物的结合亲和力进行了分析。结果,模拟CD4与gp120的关键相互作用并显示出高结合亲和力的五种顶级化合物被确定为最有前途的CD4-拟态候选物。综上所述,获得的数据表明这些化合物可作为有前途的支架,用于开发新型,高效和广泛的抗HIV-1治疗剂。

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