Integrated proteomics and connectivity map-based analysis reveal compounds with a potential antiviral effect against Japanese encephalitis virus infection in a mouse model.

Rohit Soni, Naina Soni, Abhijit Paul, Aarti Tripathi, Samrat Chatterjee, Arup Banerjee
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Abstract

Japanese encephalitis virus (JEV) is the leading causative agent of viral encephalitis in India and contributes to a significant disease burden in South Asian countries. However, no antiviral treatment is available against JEV-induced encephalitis, highlighting the urgent need for novel therapeutic approaches. Repurposing or repositioning drugs was found to be more economical and practical in the current drug development scenario. The present study aimed to develop a host-directed strategy through a computational drug repurposing approach. As part of the strategy, we first generated a dynamic signature of differentially expressed JEV infection-associated proteins in mice brains through a semiquantitative proteomics approach. With the help of the Connectivity Map (CMap) analysis, we narrowed down the lists of drugs with a high negative CMap score (-70 or lower). Based on the CMap score, we chose the top three compounds (Tipifarnib, Ly303511 and MDL11939) with CMap scores of -91.83, -88.18 and -91.15, respectively. The antiviral potential of these three compounds was further compared in both JEV-infected mouse neuroblastoma cells and C57BL/6 mice. Oral administration of Ly303511 and MDL11939, alone or in combination, showed improved outcomes (e.g. delayed death, increased survival, and less viral load than Tipifarnib alone or combined). The JEV-infected mice survived upon drug treatment, effectively reducing viral load and reversing the antiviral signature. Our results highlight Ly303511 and MDL11939 as promising host-targeted inhibitors of JEV infection and pathogenesis. Moreover, our results favor the combination of Ly303511 and MDL11939 therapy to improve clinical symptoms and reduce JEV-induced damage, thus warranting inclusion in clinical studies.

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综合蛋白质组学和基于连接图谱的分析揭示了在小鼠模型中具有潜在抗病毒作用的化合物。
日本脑炎病毒(JEV)是印度病毒性脑炎的主要病原体,并对南亚国家造成重大疾病负担。然而,目前还没有针对乙脑病毒引起的脑炎的抗病毒治疗方法,因此迫切需要新的治疗方法。在目前的药物开发情况下,重新利用或重新定位药物更为经济和实用。本研究旨在通过计算药物再利用方法开发宿主定向策略。作为该策略的一部分,我们首先通过半定量蛋白质组学方法在小鼠大脑中生成了差异表达的乙脑病毒感染相关蛋白的动态特征。在连通性图(CMap)分析的帮助下,我们缩小了CMap负得分高(-70或更低)的药物列表。根据CMap评分,我们选择了排名前三的化合物(Tipifarnib、Ly303511和MDL11939), CMap评分分别为-91.83、-88.18和-91.15。进一步比较了这三种化合物在jev感染的小鼠神经母细胞瘤细胞和C57BL/6小鼠中的抗病毒潜力。口服Ly303511和MDL11939,单独或联合使用,显示出改善的结果(例如,延迟死亡,增加生存,比单独或联合使用蒂法尼更少的病毒载量)。感染了乙脑病毒的小鼠在药物治疗后存活了下来,有效地减少了病毒载量并逆转了抗病毒特征。我们的研究结果强调Ly303511和MDL11939是有希望的宿主靶向JEV感染和发病机制抑制剂。此外,我们的研究结果支持Ly303511和MDL11939联合治疗可以改善临床症状,减少jev引起的损伤,因此值得纳入临床研究。
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