Molecular and Epidemiologic Characterization of a Pathogenic Human Bocavirus
Molecular and Epidemiologic Characterization of a Pathogenic Human Bocavirus
批准号:
7315319
负责人:
Peter J. Tattersall
金额:
$20.63万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-07-01 至 2009-06-30
关键词:
Age DistributionAntibodiesBackBaculovirusesBiological AssayBiologyBovine Papillomavirus-1CapsidCapsid ProteinsCell Culture SystemCell LineCellsChildChildhoodClinicalCohort StudiesCommunicable DiseasesCultured CellsDNA biosynthesisDetectionDiagnosticDisease AssociationEmbryoEnzymesEpidemiologic StudiesEpidemiologyEpithelial CellsFamilyFibroblastsGenomeHumanHuman Cell LineImmunoglobulin GImmunoglobulin MIn VitroInfantInfectionInsectaLengthLinkLungMolecularMolecular GeneticsMolecular VirologyMonoclonal AntibodiesMusNon-Small-Cell Lung CarcinomaOryctolagus cuniculusParvovirusPatientsPolymerase Chain ReactionPopulationPrincipal InvestigatorProteinsRateReagentRecombinantsResearchResearch DesignRespiratory Tract DiseasesRetrospective StudiesRoleSamplingSerologicalSerumSimian virus 40SymptomsTestingTransfectionViralViral GenomeVirionVirusVirus-like particlebasebovine parvovirusgene cloningmemberpathogenpolyclonal antibodypolypeptideprogramsprospectiverespiratorytoolvectorvirology
中文摘要
描述(由申请人提供):一种新发现的人类bocavavirus, HBoV -细小病毒家族的成员-似乎是儿童中流行的重要呼吸道病原体。该申请提出了一个具有广泛细小病毒研究专业知识的分子病毒学小组和一个在儿科病毒学和流行病学方面有良好发现记录的儿科传染病小组的合作努力,以进一步表征这种病毒。我们已经鉴定了几个含有病毒的儿童样本,通过诊断性PCR检测,并从这些样本中克隆了预测的主要病毒衣壳蛋白的基因,并将其克隆到杆状病毒载体中。用这种杆状病毒感染昆虫细胞,导致bocavavirus多肽的表达,并有效地组装成病毒样颗粒(vlp)。VLPs将被大量生产,以生产HboV衣壳特异性多克隆和单克隆抗体,并开发用于检测抗衣壳IgG和IgM抗体的ELISA。PCR和ELISA的结合将用于前瞻性和回顾性研究,以探索HBoV在人群中的分布和疾病关联,特别是在我们的大型儿科研究小组中。我们将尝试培养病毒并在细胞培养中研究其生物学。为此,我们将生产能够检测HBoV感染细胞中可能表达的病毒非结构基因产物的抗体,并建立密切相关的牛细小病毒(BPV-1)的感染细胞培养系统,以验证这些试剂。我们将接种几种可能合适的人类细胞系,如胚胎肺成纤维细胞、非小细胞肺癌、SV40转化的肺上皮细胞和逐步永活和转化的气道上皮细胞。将使用如上所述生成的血清学试剂,检查它们支持乙型肝炎单轮和多轮感染的能力。一旦我们确定了能够在培养中扩增HBoV的细胞系,我们将从这些细胞中生长的病毒粒子中纯化病毒基因组,通过体外DNA复制构建病毒的全长克隆,并在体外转染回称职的宿主细胞后测试其传染性。这些研究旨在开发新工具,用于检测和分离新发现的人博卡病毒(HboV),并在人血清中鉴定该病毒的抗体。这些工具将用于建立HboV的基本流行病学,并探讨其在婴儿呼吸道疾病中的作用。
英文摘要
DESCRIPTION (provided by applicant): A newly discovered human bocavirus, HBoV - a member of the parvovirus family - appears to be a significant respiratory pathogen prevalent in children. This application proposes a collaborative effort to further characterize this virus by a molecular virology group with extensive parvovirus research expertise and a pediatric infectious disease group with a proven track record of discovery in pediatric virology and epidemiology. We have identified several pediatric samples that contain the virus, as detected by diagnostic PCR, and have cloned the gene for the predicted major viral capsid protein from these samples, into a baculovirus vector. Infection of insect cells with this baculovirus results in expression of the bocaviral polypeptide and its efficient assembly into virus-like particles (VLPs). VLPs will be produced in the quantities necessary to produce HboV capsid-specific polyclonal and monoclonal antibodies, and to develop an ELISA for the detection of anti-capsid IgG and IgM antibodies. A combination of PCR and ELISA will be used, in both prospective and retrospective studies, to explore the distribution and disease associations of HBoV in the human population, particularly within our large pediatric study group. We will attempt to grow the virus and study its biology in cell culture. For this we will produce antibodies able to detect putative viral non-structural gene products expressed in HBoV infected cell, and establish an infected-cell culture system for the closely- related bovine parvovirus (BPV-1), in order to validate these reagents. We will inoculate several potentially appropriate human cell lines, such as embryonic lung fibroblasts, non-small cell lung cancer, SV40- transformed lung epithelial cells and stepwise immortalized and transformed airway epithelial cells. These will be examined for their ability to support single- and multiple-round infections with HoBV, using the serological reagents generated as above. Once we have identified a cell line capable of expanding HBoV in culture, we will purify viral genomes from virions grown in such cells, construct a full-length clone of the virus by in vitro DNA replication, and test its infectivity following transfection back into competent host cells in vitro. These studies are designed to develop new tools for the detection and isolation of the newly-discovered human bocavirus (HboV), and to identify antibodies to this virus in human serum. These tools will be used to establish the basic epidemiology of HboV and to explore its role in respiratory illness among infants.
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