Significance of heparan sulfate in HSV-1 spread
Significance of heparan sulfate in HSV-1 spread
批准号:
8304258
负责人:
DEEPAK SHUKLA
金额:
$10.62万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-16 至 2014-07-31
关键词:
AddressAdultAnimal ModelAreaCell CommunicationCellsCorneaCytoskeletonDataDevelopmentDimensionsDiseaseEducational process of instructingElementsEncephalitisEventFilopodiaFluorescence MicroscopyFutureGoalsHeparitin SulfateHerpes LabialisHerpesviridaeHerpesvirus 1HumanImmunocompromised HostIn VitroIndependent Scientist AwardIndividualInfectionLaboratoriesLearningLifeMembraneModelingMolecularMusNatureOrganPathogenesisPathway interactionsPopulationPrincipal InvestigatorProcessProductivityReportingResearchRetroviridaeSignal TransductionSimplexvirusTestingTherapeuticTrainingTransport ProcessTravelViralVirionVirusWagesWorkbasecareercell typedesignenv Gene Productsgraduate studentimprovedin vivoinsightmutantneuronal cell bodynovelprogramsprophylacticreceptorresearch studytargeted deliverytransmission processuptakevirus host interaction
中文摘要
描述(由申请方提供):1型单纯疱疹病毒(HSV-1)在成年人群中高度流行。候选人的长期职业目标是保持一个杰出的研究计划,研究早期事件,使病毒进入细胞,并建立一个生产性的感染传播。迄今为止,候选人的研究为理解HSV-1进入受体和摄取机制做出了重大贡献。最近,候选人的实验室在通过活细胞荧光显微镜了解HSV-1与宿主细胞的相互作用方面取得了新的进展。独立科学家奖(K.02)提供的工资支持将大大减少候选人从事新的研究的教学和行政责任,并更多地用于候选人实验室的研究生和研究员的培训,这将提高他们的整体生产力。本提案扩展了候选人对HSV-1进入和传播机制进行的研究。它探讨了硫酸乙酰肝素(HS)在病毒传播和扩散过程中的意义。它是基于一个新的观察,即最初的病毒-宿主相互作用发生在膜过程,如丝状伪足,表达HS。这种相互作用然后被病毒利用,用于有效和靶向地递送到细胞体,以进入并扩散到邻近细胞。虽然这种现象似乎存在于所有疱疹病毒检查到目前为止的候选人和模拟"冲浪"现象报告与逆转录病毒,确切的分子机制的运输过程仍然未知。目前还不清楚病毒是在细胞外还是在细胞内的膜突起上传播。候选人假设病毒体在到达细胞体之前都是外源性的。根据对进入受体的可及性,病毒体要么进入细胞,要么再次通过膜过程到达邻近的细胞体进入。将进行实验以确定疱疹病毒冲浪现象的外源性和分子基础。冲浪在病毒传播中的重要性将通过动物模型来解决。这项申请中的拟议工作将为候选人实验室目前正在进行的工作提供一个新的层面,也将为未来的研究开辟一个新的生物医学重要领域。
相关性:HSV-1感染在人类中高度流行。世界上大约80%的成年人可能对该病毒呈血清反应阳性。疾病的表现范围从较常见的发热水泡到罕见的脑炎病例。病毒通过其包膜蛋白与我们细胞上的受体相互作用,这种相互作用对于感染的开始至关重要。我们的研究可能会提出新的策略来阻止病毒在人类中的传播和传播。
英文摘要
DESCRIPTION (provided by applicant): Herpes simplex virus type-1 (HSV-1) is highly prevalent among adult human population. The candidate's long-term career goal is to maintain an outstanding research program in studying early events that allow the virus to enter into cells and establish a productive infection for spread. To date, the candidate's research has made a significant contribution to the understanding of HSV-1 entry receptors and uptake mechanisms. Most recently the candidate's laboratory has made new advances in understanding the interactions of HSV-1 with host cells via live cell fluorescence microscopy. The salary support provided by an Independent Scientist Award (K.02) will significantly reduce teaching and administrative responsibilities for the candidate to pursue a new line of research and be more available for the training of graduate students and fellows in the candidate's laboratory, which will enhance their overall productivity. The present proposal extends the research being conducted by the candidate on HSV-1 entry and spread mechanisms. It explores the significance of heparan sulfate (HS) in viral transmission and spread processes. It is based on a novel observation that initial virus-host interactions occur at membrane processes such as filopodia that express HS. This interaction is then exploited by the virus for an efficient and targeted delivery to the cell body for entry and spread to neighboring cells. Although this phenomenon seems to exist for all the herpesviruses examined so far by the candidate and mimic "surfing" phenomenon reported with retroviruses, the exact molecular mechanism for the transport process remain unknown. It is also unclear whether the viruses travel exogenously or intracellularly on the membrane processes. The candidate hypothesizes that the virions travel exogenously until they reach the cell body. Depending on accessibility to entry receptor, the virions either enter into a cell or travel again via membrane processes to reach a neighboring cell body for entry. Experiments will be performed to determine the exogenous nature and the molecular basis of the herpesvirus surfing phenomenon. Significance of the surfing in virus transmission will be addressed using an animal model. The proposed work in this application will provide a new dimension to the current work being done in the candidate's laboratory and it will also open up a new and biomedically significant area for future research.
RELEVANCE: HSV-1 infections are highly prevalent among humans. About 80% of world's adult population may be seropositive for the virus. The disease manifestations range from more common fever blisters to rare cases of encephalitis. The virus via its envelope proteins interacts with receptors on our cells and this interaction is crucial for the initiation of the infection. Our research may suggest new strategies to stop virus transmission and spread among humans.
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