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通过筛选开放的抗原生动物化合物库发现新型寨卡病毒聚合酶非核苷抑制剂。

Novel Nonnucleoside Inhibitors of Zika Virus Polymerase Identified through the Screening of an Open Library of Antikinetoplastid Compounds.

机构信息

Facultad de Farmacia, Universidad CEU San Pablo, Madrid, Spain.

Department of Biotechnology, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, Consejo Superior de Investigaciones Científicas (INIA, CSIC), Madrid, Spain.

出版信息

Antimicrob Agents Chemother. 2021 Aug 17;65(9):e0089421. doi: 10.1128/AAC.00894-21.

Abstract

Zika virus (ZIKV) is a mosquito-borne pathogen responsible for neurological disorders (Guillain-Barré syndrome) and congenital malformations (microcephaly). Its ability to cause explosive epidemics, such as that of 2015 to 2016, urges the identification of effective antiviral drugs. Viral polymerase inhibitors constitute one of the most successful fields in antiviral research. Accordingly, the RNA-dependent RNA polymerase activity of flavivirus nonstructural protein 5 (NS5) provides a unique target for the development of direct antivirals with high specificity and low toxicity. Here, we describe the discovery and characterization of two novel nonnucleoside inhibitors of ZIKV polymerase. These inhibitors, TCMDC-143406 (compound 6) and TCMDC-143215 (compound 15) were identified through the screening of an open-resource library of antikinetoplastid compounds using a fluorescence-based polymerization assay based on ZIKV NS5. The two compounds inhibited ZIKV NS5 polymerase activity and ZIKV multiplication in cell culture (half-maximal effective concentrations [EC] values of 0.5 and 2.6 μM for compounds 6 and 15, respectively). Both compounds also inhibited the replication of other pathogenic flaviviruses, namely, West Nile virus (WNV; EC values of 4.3 and 4.6 μM for compounds 6 and 15, respectively) and dengue virus 2 (DENV-2; EC values of 3.4 and 9.6 μM for compounds 6 and 15, respectively). Enzymatic assays confirmed that the polymerase inhibition was produced by a noncompetitive mechanism. Combinatorial assays revealed an antagonistic effect between both compounds, suggesting that they would bind to the same region of ZIKV polymerase. The nonnucleoside inhibitors of ZIKV polymerase here described could constitute promising lead compounds for the development of anti-ZIKV therapies and, eventually, broad-spectrum antiflavivirus drugs.

摘要

寨卡病毒(ZIKV)是一种通过蚊子传播的病原体,可导致神经紊乱(格林-巴利综合征)和先天性畸形(小头症)。其引发暴发性流行的能力,如 2015 年至 2016 年的流行,促使人们寻找有效的抗病毒药物。病毒聚合酶抑制剂是抗病毒研究中最成功的领域之一。因此,黄病毒非结构蛋白 5(NS5)的 RNA 依赖性 RNA 聚合酶活性为开发具有高特异性和低毒性的直接抗病毒药物提供了一个独特的靶点。在这里,我们描述了两种新型寨卡病毒聚合酶非核苷抑制剂的发现和特征。这些抑制剂,TCMDC-143406(化合物 6)和 TCMDC-143215(化合物 15)是通过筛选开放资源库中的抗原生动物化合物,使用基于寨卡病毒 NS5 的荧光聚合酶测定法发现的。这两种化合物抑制寨卡病毒 NS5 聚合酶活性和寨卡病毒在细胞培养中的增殖(化合物 6 和 15 的半数最大有效浓度[EC]值分别为 0.5 和 2.6μM)。这两种化合物还抑制了其他致病性黄病毒的复制,即西尼罗河病毒(WNV;化合物 6 和 15 的 EC 值分别为 4.3 和 4.6μM)和登革热病毒 2(DENV-2;化合物 6 和 15 的 EC 值分别为 3.4 和 9.6μM)。酶促测定证实聚合酶抑制是通过非竞争性机制产生的。组合测定显示两种化合物之间存在拮抗作用,表明它们将结合到寨卡病毒聚合酶的同一区域。这里描述的寨卡病毒聚合酶的非核苷抑制剂可能构成开发抗寨卡病毒疗法的有前途的先导化合物,并最终开发出广谱抗黄病毒药物。

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