Small-molecule inhibitors of flavivirus entry
Small-molecule inhibitors of flavivirus entry
批准号:
9221940
负责人:
Priscilla Li-ning Yang
金额:
$150.49万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
AffectAffinityAntiviral AgentsAreaBindingBinding SitesBiochemicalBiological AssayCell Culture TechniquesCellsChildChimeric ProteinsClinicalCollaborationsCulicidaeDengueDengue InfectionDengue VirusDevelopmentDiseaseDrug KineticsE proteinExhibitsFlavivirusFluorescence PolarizationGoalsHumanImaging TechniquesImmunityIn VitroInfectionKineticsKunjin virusLeadLifeLinkMeasurementMeasuresMusMutationPathogenesisPathway interactionsPharmaceutical ChemistryPharmaceutical PreparationsPharmacologyPopulationProbabilityPropertyProteinsRecombinantsResistanceResistance profileRiskSeriesSerotypingSeveritiesSolubilitySpecificityStructureTestingTherapeuticTick-Borne Encephalitis VirusTick-Borne Encephalitis VirusesTicksVaccinesVariantViralViral Envelope ProteinsViral PhysiologyVirionVirusVirus DiseasesVirus InhibitorsWest Nile virusWorkX-Ray CrystallographyYellow fever virusanalogbasecell typecytotoxicitydesigndrug discoveryefficacy studyexperienceexperimental studyimprovedin vivoinfluenzavirusinhibitor/antagonistinterestlive cell imagingmouse modelmutantparticlepathogenpharmacophorepre-clinicalpreventprotein Eresistance mechanismresistance mutationreverse geneticssmall moleculesmall molecule inhibitorsuccesstooltransmission processvaccine developmentviral resistancevirus envelope
中文摘要
登革热病毒和其他黄病毒包括西尼罗河病毒、蜱传脑炎病毒和黄热病毒,是广泛传播的蚊子或蜱传人类病原体。世界上大约40%的人口生活在登革热传播风险很大的地区,每年可能有多达1亿人感染登革热和可能致命的严重登革热。开发一种对所有四种登革热血清型都有效的疫苗是困难的,因为感染四种血清型之一不会导致对其他三种血清型的保护性免疫,并可能导致严重的威胁生命的疾病的风险增加,特别是在儿童中。针对登革热的抗病毒药物由于其降低登革热相关疾病的严重程度以及减少传播的潜力而受到关注。该提案将有助于努力开发登革热抗病毒药物,通过开发登革热进入的机制良好表征的小分子抑制剂,并使用这些来验证登革热E蛋白作为体外和体内的抗病毒靶点。我们以前已经确定了三个结构不同的先导化合物系列和抑制剂,表现出一系列的活动,对登革热病毒的进入。在拟议的工作中,我们将结合使用X射线晶体学,药物化学,直接蛋白质-小分子亲和力测量,单病毒融合和活细胞成像分析,以及抗性研究,以优化我们的化合物的药理活性,并阐明与登革热的有效泛血清型抑制相对应的生化和结构作用机制。这些努力的关键是定量分析,类似于酶活性测量,用于研究病毒包膜蛋白的生化功能,并使我们能够将小分子抑制剂的生化机制与它们阻断感染的细胞进入途径中的步骤联系起来。优化的登革进入抑制剂将在登革感染和发病机制的鼠模型中进行测试。总的来说,我们的努力旨在生产可以作为登革热药物发现工作的临床前候选药物的化合物。更广泛地说,这项工作建立了一个合理的方法来开发其他包膜病毒的小分子抑制剂作为潜在的抗病毒药物的模板
英文摘要
Dengue virus and other flaviviruses including West Nile virus, tick-borne encephalitis virus, and Yellow Fever virus, are widespread, mosquito- or tick-borne human pathogens. About 40% of the world's population lives in areas with substantial risk of dengue transmission, and as many as 100 million people may be infected annually, experiencing dengue fever and potentially lethal severe dengue. Development of a vaccine effective against all four dengue serotypes has been difficult because infection with one ofthe four serotypes does not lead to protective immunity against any of the other three and may lead to enhanced risk of severe, life-threatening illness, especially in children. Antivirals against dengue are of interest due to their potential to reduce the severity of dengue-associated disease as well as to reduce transmission. This proposal will contribute to efforts to develop dengue antivirals by developing mechanistically well-characterized small molecule inhibitors of dengue entry and using these to validate the dengue E protein as an antiviral target in vitro and in vivo. We have previously identified three structurally distinct lead compound series and inhibitors that exhibit a spectrum of activities against dengue virus entry. In the proposed work, we will use a combination of x-ray crystallography, medicinal chemistry, direct protein-small molecule affinity measurements, single-virion fusion and live-cell imaging assays, and resistance studies to optimize the pharmacological activity of our compounds and to elucidate the biochemical and structural mechanisms of action that correspond to potent, pan-serotype inhibition of dengue. Key to these efforts are quantitative assays, analogous to enzymatic activity measurements, for studying the biochemical functions of the viral envelope protein and that allow us to link the biochemical mechanism of small-molecule inhibitors with the step(s) in the cell-entry pathway at which they block infection. Optimized dengue entry inhibitors will be tested in a murine model of dengue infection and pathogenesis. Collectively, our efforts are aimed at producing compounds that can be advanced as preclinical candidates for dengue drug discovery efforts. More broadly, this work establishes the template for a rational approach to the development of small molecule inhibitors of other enveloped viruses as potential antivirals
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