Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, Wuhan 430205, China.
Viruses. 2021 Nov 5;13(11):2229. doi: 10.3390/v13112229.
Influenza is an acute respiratory infection caused by the influenza virus, but few drugs are available for its treatment. Consequently, researchers have been engaged in efforts to discover new antiviral mechanisms that can lay the foundation for novel anti-influenza drugs. The viral RNA-dependent RNA polymerase (RdRp) is an enzyme that plays an indispensable role in the viral infection process, which is directly linked to the survival of the virus. Methods of inhibiting PB1-PB2 (basic polymerase 1-basic polymerase 2) interactions, which are a key part of RdRp enzyme activity, are integral in the design of novel antiviral drugs, a specific PB1-PB2 interactions inhibitor has not been reported. We have screened Enamine's database and conducted a parallel screening of multiple docking schemes, followed by simulations of molecular dynamics to determine the structure of a stable ligand-PB1 complex. We also calculated the free energy of binding between the screened compounds and PB1 protein. Ultimately, we screened and identified a potential PB1-PB2 inhibitor using the ADMET prediction model.
流感是由流感病毒引起的急性呼吸道感染,但可用于治疗流感的药物却寥寥无几。因此,研究人员一直在努力寻找新的抗病毒机制,为新型抗流感药物奠定基础。病毒 RNA 依赖性 RNA 聚合酶(RdRp)是一种在病毒感染过程中发挥不可或缺作用的酶,与病毒的存活直接相关。抑制 PB1-PB2(基本聚合酶 1-基本聚合酶 2)相互作用的方法是 RdRp 酶活性的关键部分,在新型抗病毒药物的设计中不可或缺,目前尚未报道特定的 PB1-PB2 相互作用抑制剂。我们对 Enamine 数据库进行了筛选,并对多个对接方案进行了平行筛选,然后进行了分子动力学模拟,以确定稳定配体-PB1 复合物的结构。我们还计算了筛选化合物与 PB1 蛋白之间的结合自由能。最终,我们使用 ADMET 预测模型筛选并鉴定了一种潜在的 PB1-PB2 抑制剂。