National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110067, India.
National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110067, India.
Int J Biol Macromol. 2023 Feb 28;229:515-528. doi: 10.1016/j.ijbiomac.2022.12.252. Epub 2022 Dec 28.
Given the paucity of antiviral treatments for monkeypox disease, caused by the Monkeypox virus (MPXV), there is a pressing need for the development/identification of new drugs to treat the infection. MPXV possesses a linear dsDNA genome that is replicated by a DNA replication complex of which DNA polymerase (DPol) forms an important component. Owing to the importance of DPol in the viral life cycle, identifying/designing small molecules abolishing its function could yield new antivirals. In this study, we first used the AlphaFold artificial intelligence program to model the 3D structure of the MPXV DPol; like the fold of DPol from other organisms, the MPXV DPol structure has the characteristic exonuclease, thumb, palm, and fingers sub-domains arrangement. Subsequently, we have identified several inhibitors through virtual screening of ZINC and antiviral libraries. Molecules with phenyl scaffold along with alanine-based and tetrazole-based molecules showed the best docking score of -8 to -10 kcal/mol. These molecules bind in the palm and fingers sub-domains interface region, which partially overlaps with the DNA binding path. The delineation of DPol/inhibitor interactions showed that majorly active site residues ASP549, ASP753, TYR550, ASN551, SER552, and ASN665 interact with the inhibitors. These compounds exhibit good Absorption, Distribution, Metabolism and Excretion properties.
由于治疗猴痘病毒(MPXV)引起的猴痘病的抗病毒治疗方法很少,因此迫切需要开发/鉴定新的药物来治疗这种感染。MPXV 具有线性 dsDNA 基因组,由 DNA 复制复合物复制,其中 DNA 聚合酶(DPol)是重要组成部分。由于 DPol 在病毒生命周期中的重要性,鉴定/设计能够破坏其功能的小分子可能会产生新的抗病毒药物。在这项研究中,我们首先使用 AlphaFold 人工智能程序对 MPXV DPol 的 3D 结构进行建模;与来自其他生物体的 DPol 折叠一样,MPXV DPol 结构具有特征性的外切酶、拇指、手掌和手指亚结构排列。随后,我们通过虚拟筛选 ZINC 和抗病毒文库鉴定了几种抑制剂。具有苯环骨架以及丙氨酸基和四唑基分子的分子表现出最佳的对接评分-8 至-10 kcal/mol。这些分子结合在手掌和手指亚结构界面区域,该区域与 DNA 结合路径部分重叠。DPol/抑制剂相互作用的描绘表明,主要的活性位点残基 ASP549、ASP753、TYR550、ASN551、SER552 和 ASN665 与抑制剂相互作用。这些化合物表现出良好的吸收、分布、代谢和排泄特性。