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利用基于双分子发光互补的报告系统筛选靶向流感病毒聚合酶复合物组装的新型小分子抑制剂。

Screening for Novel Small-Molecule Inhibitors Targeting the Assembly of Influenza Virus Polymerase Complex by a Bimolecular Luminescence Complementation-Based Reporter System.

作者信息

Li Chunfeng, Wang Zining, Cao Yang, Wang Lulan, Ji Jingyun, Chen Zhigao, Deng Tao, Jiang Taijiao, Cheng Genhong, Qin F Xiao-Feng

机构信息

Center for Systems Medicine, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, and Suzhou Institute of Systems Medicine, Suzhou, Jiangsu, China.

Collaborative Innovation Center of Cancer Medicine, Department of Experimental Medicine, State Key Laboratory of Oncology in South China, Sun Yat-sen University, Guangzhou, China.

出版信息

J Virol. 2017 Feb 14;91(5). doi: 10.1128/JVI.02282-16. Print 2017 Mar 1.

Abstract

Influenza virus RNA-dependent RNA polymerase consists of three viral protein subunits: PA, PB1, and PB2. Protein-protein interactions (PPIs) of these subunits play pivotal roles in assembling the functional polymerase complex, which is essential for the replication and transcription of influenza virus RNA. Here we developed a highly specific and robust bimolecular luminescence complementation (BiLC) reporter system to facilitate the investigation of influenza virus polymerase complex formation. Furthermore, by combining computational modeling and the BiLC reporter assay, we identified several novel small-molecule compounds that selectively inhibited PB1-PB2 interaction. Function of one such lead compound was confirmed by its activity in suppressing influenza virus replication. In addition, our studies also revealed that PA plays a critical role in enhancing interactions between PB1 and PB2, which could be important in targeting sites for anti-influenza intervention. Collectively, these findings not only aid the development of novel inhibitors targeting the formation of influenza virus polymerase complex but also present a new tool to investigate the exquisite mechanism of PPIs. Formation of the functional influenza virus polymerase involves complex protein-protein interactions (PPIs) of PA, PB1, and PB2 subunits. In this work, we developed a novel BiLC assay system which is sensitive and specific to quantify both strong and weak PPIs between influenza virus polymerase subunits. More importantly, by combining modeling and our BiLC assay, we identified a small molecule that can suppress influenza virus replication by disrupting the polymerase assembly. Thus, we developed an innovative method to investigate PPIs of multisubunit complexes effectively and to identify new molecules inhibiting influenza virus polymerase assembly.

摘要

流感病毒RNA依赖的RNA聚合酶由三个病毒蛋白亚基组成:PA、PB1和PB2。这些亚基之间的蛋白质-蛋白质相互作用(PPI)在组装功能性聚合酶复合物中起关键作用,而该复合物对于流感病毒RNA的复制和转录至关重要。在此,我们开发了一种高度特异且强大的双分子发光互补(BiLC)报告系统,以促进对流感病毒聚合酶复合物形成的研究。此外,通过结合计算建模和BiLC报告分析,我们鉴定出了几种新型小分子化合物,它们能选择性抑制PB1-PB2相互作用。其中一种先导化合物的功能通过其抑制流感病毒复制的活性得到了证实。此外,我们的研究还表明,PA在增强PB1和PB2之间的相互作用中起关键作用,这对于抗流感干预的靶向位点可能很重要。总的来说,这些发现不仅有助于开发针对流感病毒聚合酶复合物形成的新型抑制剂,还提供了一种研究PPI精细机制的新工具。功能性流感病毒聚合酶的形成涉及PA、PB1和PB2亚基之间复杂的蛋白质-蛋白质相互作用(PPI)。在这项工作中,我们开发了一种新型的BiLC分析系统,该系统对量化流感病毒聚合酶亚基之间的强PPI和弱PPI均敏感且特异。更重要的是,通过结合建模和我们的BiLC分析,我们鉴定出一种小分子,它可以通过破坏聚合酶组装来抑制流感病毒复制。因此,我们开发了一种创新方法,以有效研究多亚基复合物的PPI,并鉴定抑制流感病毒聚合酶组装的新分子。

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