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Screening of commercial cyclic peptide as inhibitor NS5 methyltransferase of Dengue virus through Molecular Docking and Molecular Dynamics Simulation

机译:通过分子对接和分子动力学模拟筛选作为登革热病毒抑制剂NS5甲基转移酶的商用环肽

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摘要

Dengue has become a major global health threat, especially in tropical and subtropical regions. The development of antiviral agent targeting viral replication is really needed at this time. NS5 methyltransferase presents as a novel antiviral target. This enzyme plays an important role in the methylation of 5'-cap mRNA. Inhibition of the NS5 methyltransferase could inhibit dengue virus replication. In this research, two sites of NS5 methyltransferase (S-Adenosyl methionine/SAM binding site and RNA-cap site) were used as targets for inhibition. As much as 300 commercial cyclic peptides were screened to these target sites by means of molecular docking. Analysis of ligand-enzyme binding free energy and pharmacological prediction revealed two best ligands, namely [Tyr123] Prepro Endothelin (110-130), amide, human and Urotensin II, human. According to molecular dynamic simulation, both ligands maintain a stable complex conformation between enzyme and ligand at temperature 310 K and 312 K. Hence, Urotensin II, human is more reactive at 312 K than at 310 K. However, both ligands can be used as potential inhibitor candidates against NS5 methyltransferase of dengue virus with Urotensin II, human exposes more promising activity at 312 K.
机译:登革热已成为主要的全球健康威胁,尤其是在热带和亚热带地区。目前确实需要开发靶向病毒复制的抗病毒剂。 NS5甲基转移酶是一种新型抗病毒靶标。该酶在5'-cap mRNA的甲基化中起重要作用。抑制NS5甲基转移酶可以抑制登革热病毒复制。在这项研究中,NS5甲基转移酶的两个位点(S-腺苷甲硫氨酸/ SAM结合位点和RNA帽位)被用作抑制目标。通过分子对接将多达300种商业环肽筛选到这些靶位点。配体-酶结合自由能的分析和药理学预测揭示了两个最佳配体,即[Tyr123]前原内皮素(110-130),人酰胺和人降压素II。根据分子动力学模拟,两种配体在310 K和312 K的温度下均能维持酶和配体之间稳定的复合构象。因此,对于人的尿紧张素II,在312 K时的反应性比在310 K时更高。但是,两种配体都可以用作潜在的候选候选物与人类抗Urotensin II对抗登革热病毒的NS5甲基转移酶,人类在312 K时暴露出更多有希望的活性。

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