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Comparative in silico study of congocidine congeners as potential inhibitors of African swine fever virus

机译:刚果金同系物作为非洲猪瘟病毒潜在抑制剂的计算机模拟研究

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摘要

African swine fever virus (ASFV) infection is fatal in domesticated pigs, with a mortality rate approaching 100%. This may result in economic losses and threats to food security. Currently, there are no approved vaccines or antiviral therapies for ASFV. Therefore, in this study, we evaluated congocidine congeners and a tris-benzimidazole as potential inhibitors of ASFV transcription using an in silico approach. We applied redocking of congocidine and docking of its congeners and a tris-benzimidazole to a receptor containing B-DNA with AT-motifs as a target to mimic conserved ASFV late gene promoters. Subsequently, the binding scores of DNA-ligand docked complexes were evaluated and their binding affinity was estimated. Molecular dynamics (MD) simulation was then used to assess ligand behavior within the minor groove. From our results, it is evident the less toxic congocidine congeners and tris-benzimidazole could dock to AT-rich regions significantly. Additionally, the predicted binding affinities had suitable values comparable to other experimentally determined minor groove binders, MD simulation of the docked DNA-ligand complexes and subsequent molecular trajectory visualization further showed that the ligands remained embedded in the minor groove during the time course of simulation, indicating that these ligands may have potential applications in abrogating ASFV transcription.
机译:非洲猪瘟病毒(ASFV)感染对家养猪具有致命性,死亡率接近100%。这可能会导致经济损失和对粮食安全的威胁。当前,尚无批准的ASFV疫苗或抗病毒疗法。因此,在这项研究中,我们使用计算机模拟方法评估了刚果椰子同系物和tris-苯并咪唑作为ASFV转录的潜在抑制剂。我们应用了对congocidine的重定位,将其同族物和tris-苯并咪唑对接至含有B-DNA的受体,并以AT-基序为目标,以模仿保守的ASFV晚期基因启动子。随后,评估DNA-配体对接复合物的结合得分并估计其结合亲和力。然后使用分子动力学(MD)模拟来评估小沟内的配体行为。从我们的结果可以看出,毒性较小的刚果金同系物和tris-benzimidazole可以明显地停靠在富含AT的区域。此外,预测的结合亲和力具有与其他实验确定的小沟结合物相当的合适值,对接的DNA-配体复合物的MD模拟以及随后的分子轨迹可视化进一步表明,在模拟的过程中,配体仍保留在小沟中,表明这些配体可能在废除ASFV转录中具有潜在的应用。

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