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A Small-Molecule Compound Has Anti-influenza A Virus Activity by Acting as a 'PB2 Inhibitor'

机译:小分子化合物通过作为“Pb2抑制剂”而具有抗流感病毒活性

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摘要

With regular influenza epidemics and the prevalence of drug-resistant influenza virus strains, it is extremely crucial to develop effective and low-toxicity anti-influenza A virus drugs that act on conserved sites of novel targets. Here, we found a new anti-influenza virus compound, 1,3-dihydroxy-6-benzo[c]chromene (D715-2441), from a library of 8026 small-molecule compounds by cell-based MTT assay and explored the underlying mechanisms. Our results revealed that D715-2441 possessed antiviral activities against multiple subtypes of influenza A viruses (IAVs) strains, including H1N1, H5N1, H7N9, H3N2, the clinical isolate 690 (H3), and oseltamivir-resistant strains with the H274Y NA mutation, and suppressed the early steps in the virus replication cycle. Further mechanistic studies indicated that D715-2441 clearly inhibited viral polymerase activity and directly influenced the location of the PB2 protein. Moreover, binding affinity analyses confirmed that D715-2441 bound specifically to the PB2cap protein. Further, protein sequence alignment and a computer-aided molecular docking indicated that highly conserved amino acid residues in the cap-binding pocket of PB2cap were possible binding sites for D715-2441, which indicates that D715-2441 might be employed as a cap-binding competitor. Moreover, the combination of D715-2441 and zanamivir possessed a remarkable synergistic antiviral effect, with an FICI value of 0.40. In conclusion, these results strongly suggest that D715-2441 has potential as a promising candidate against IAV infection. More importantly, our work offers novel options for the strategic development of PB2cap inhibitors of IAV.
机译:通过常规流感流行性流感和耐药性流感病毒菌株的患病率,开发有效和低毒性抗流感的病毒药物是至关重要的。在这里,我们发现了一种新的抗流感病毒化合物,1,3-二羟基-6-苯并[C]铬(D715-2441),来自8026个小分子化合物的文库,通过基于细胞的MTT测定,并探索了下面的机制。我们的研究结果表明,D715-2441具有针对流感病毒(IAV)菌株的多种亚型的抗病毒活性,包括H1N1,H5N1,H7N9,H3N2,临床分离物690(H3),以及具有H274Y NA突变的雌肽抗性菌株,并抑制病毒复制周期中的早期步骤。进一步的机械研究表明,D715-2441明显抑制病毒聚合酶活性并直接影响PB2蛋白的位置。此外,结合亲和力分析证实D715-2441特异性与PB2CAP蛋白结合。此外,蛋白质序列对准和计算机辅助分子对接表明,PB2CAP的帽结合袋中的高度保守的氨基酸残基是D715-2441的粘合位点,这表明D715-2441可以用作帽结合竞争者。此外,D715-2441和Zanamivir的组合具有显着的协同抗病毒效应,FICI值为0.40。总之,这些结果强烈暗示D715-2441具有潜在的候选人免受IAV感染。更重要的是,我们的工作提供了IAV PB2CAP抑制剂的战略开发的新选择。

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  • 来源
    《Molecular pharmaceutics》 |2018年第9期|共11页
  • 作者单位

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

    Southern Med Univ Sch Pharmaceut Sci Guangzhou Key Lab Drug Res Emerging Virus Prevent Guangdong;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

    influenza A virus; virus replication; viral polymerase; PB2; PB2 cap-binding inhibitor;

    机译:流感病毒;病毒复制;病毒聚合酶;PB2;PB2帽结合抑制剂;

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