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靶向A/PR/8/34/H1N1聚合酶催化位点的抗流感核苷三磷酸的发现。

Discovery of anti-influenza nucleoside triphosphates targeting the catalytic site of A/PR/8/34/H1N1 polymerase.

作者信息

Pagadala Nataraj Sekhar, Bhat Rakesh, Kumar D Jagadeesh, Landi Abdolamir

机构信息

Department of Medical Microbiology and Immunology, University of Alberta, Edmonton, AB T6G 2E1 Canada.

Li Ka Shing Institute of Virology, University of Alberta, Edmonton, AB Canada.

出版信息

Med Chem Res. 2020;29(8):1463-1477. doi: 10.1007/s00044-020-02561-0. Epub 2020 May 24.

Abstract

In an effort to develop potent anti-influenza drugs that inhibit the activity of influenza virus RNA-dependent RNA polymerase (IAV RdRp), a database of nucleoside triphosphates with ~800 molecules were docked with the homology model of IAV RdRp from A/PR/8/34/H1N1 strain. Out of top 12 molecules that bind with higher affinities to the catalytic site of IAV RdRp above and below the PB1 priming loop, only seven molecules decreased the transcriptional activity of the viral RNA polymerase with an IC in the range of 0.09-3.58 µM. Molecular docking combining with experimental study indicated that the molecules with linear chain are more effective in inhibiting IAV RdRp replication than the molecules with V-shaped and are cyclic in nature. A correlation between Δ and LogIC for these seven compounds resulted an value of 0.73. Overall, these newly developed seven nucleoside triphosphates lay a strong foundation for the future development of a new therapeutics that can satisfy the Lipinski's rule of five exhibiting high specificity to the catalytic site of influenza-A viruses.

摘要

为了开发能够抑制流感病毒RNA依赖性RNA聚合酶(IAV RdRp)活性的强效抗流感药物,一个包含约800个分子的核苷三磷酸数据库与来自A/PR/8/34/H1N1毒株的IAV RdRp同源模型进行了对接。在与PB1引发环上下的IAV RdRp催化位点具有较高亲和力结合的前12个分子中,只有7个分子降低了病毒RNA聚合酶的转录活性,其IC50范围为0.09 - 3.58 μM。分子对接结合实验研究表明,直链分子比V形且具有环状结构的分子在抑制IAV RdRp复制方面更有效。这七种化合物的ΔG与LogIC50之间的相关性得出r值为0.73。总体而言,这些新开发的七种核苷三磷酸为未来开发一种能够满足Lipinski五规则且对甲型流感病毒催化位点具有高特异性的新疗法奠定了坚实基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47ca/7246003/362e1a6d3572/44_2020_2561_Fig1_HTML.jpg

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