首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Study on the molecular mechanism of inhibiting HIV-1 integrase by EBR28 peptide via molecular modeling approach.
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Study on the molecular mechanism of inhibiting HIV-1 integrase by EBR28 peptide via molecular modeling approach.

机译:通过分子模拟方法研究EBR28肽抑制HIV-1整合酶的分子机制。

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Human immunodeficiency virus type 1 (HIV-1) integrase (IN) is an essential enzyme in the HIV-1 lifecycle which aids the integration of viral DNA into the host chromosome. Recently synthesized 12-mer peptide EBR28, which can strongly bind to IN, is one of the most potential small peptide leading compounds inhibiting IN binding with viral DNA. However, the binding mode between EBR28 peptide with HIV-1 IN and the inhibition mechanism remain uncertain. In this paper, the binding modes of EBR28 with HIV-1 IN monomer core domain (IN(1)) and dimmer core domain (IN(2)) were investigated by using molecular docking and molecular dynamics (MD) simulation methods. The results indicated that EBR28 bound to the interfaces of the IN(1) and IN(2) systems mainly through the hydrophobic interactions with the beta3, alpha1 and alpha5 regions of the proteins. The binding free energies for IN(1) with a series of EBR28 mutated peptides were calculated with the MM/GBSA model, and the correlation between the calculated and experimental binding free energies is very good (r=0.88). Thus, the validity of the binding mode of IN(1) with EBR28 was confirmed. Based on the binding modes, the inhibition mechanism of EBR28 was explored by analyzing the essential dynamics (ED), energy decomposition and the mobility of EBR28 in the two docked complexes. The proposed inhibition mechanism is represented that EBR28 binds to the interface of IN(1) to form the IN(1)_EBR28 complex and preventes the formation of IN dimmer, finally leads to the partial loss of binding potency for IN with viral DNA. All of the above simulation results agree well with experimental data, which provide us with some helpful information for designing anti-HIV small peptide drugs.
机译:人类1型免疫缺陷病毒(HIV-1)整合酶(IN)是HIV-1生命周期中必不可少的酶,有助于将病毒DNA整合到宿主染色体中。最近合成的可与IN牢固结合的12-mer肽EBR28是抑制IN与病毒DNA结合的最有潜力的小肽前导化合物之一。然而,EBR28肽与HIV-1 IN的结合方式和抑制机制仍然不确定。在本文中,通过分子对接和分子动力学(MD)模拟方法研究了EBR28与HIV-1 IN单体核心结构域(IN(1))和二聚体核心结构域(IN(2))的结合方式。结果表明,EBR28主要通过与蛋白质的beta3,alpha1和alpha5区的疏水相互作用与IN(1)和IN(2)系统的界面结合。使用MM / GBSA模型计算IN(1)与一系列EBR28突变肽的结合自由能,并且计算的结合自由能与实验结合自由能之间的相关性非常好(r = 0.88)。因此,证实了IN(1)与EBR28的结合模式的有效性。基于结合方式,通过分析两种对接配合物的基本动力学(ED),能量分解和EBR28的迁移性,探索了EBR28的抑制机理。所提出的抑制机制表示,EBR28与IN(1)的界面结合形成IN(1)_EBR28复合物并阻止IN暗淡的形成,最终导致IN与病毒DNA的结合力部分丧失。以上所有模拟结果均与实验数据吻合良好,为我们设计抗HIV小肽药物提供了有益的信息。

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