Genetic Analysis of Papillomavirus Virion Morphogenesis
Genetic Analysis of Papillomavirus Virion Morphogenesis
批准号:
7489432
负责人:
Craig M Meyers
金额:
$34.33万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-09-01 至 2010-08-31
关键词:
BiologicalCapsidCapsid ProteinsCell CommunicationCellsChimera organismComplementComplexConditionCoupledCysteineDNADataEnd PointEnvironmentEventFutureGeneticGenomicsGoalsHuman papillomavirus 16Human papillomavirus 18InfectionInvestigationKnowledgeL1 viral capsid proteinLaboratoriesLife Cycle StagesMapsMolecularMolecular ConformationMolecular GeneticsMorphogenesisMutateN-terminalNatural HistoryObject AttachmentPapillomavirusPositioning AttributeProcessProteinsRangeReagentResearchResearch PersonnelResearch ProposalsRoleStructural ProteinStructureSystemTestingTimeTissuesViralViral GenomeViral Nonstructural ProteinsVirionVirusVirus-like particledesigngene interactiongenetic analysisinnovationinsightparticleprogramsresearch studyself assemblyvirus culture
中文摘要
描述(由申请人提供):乳头瘤病毒(PV)衣壳蛋白已进化出功能结构域,用于其自身与PV病毒非结构蛋白、PV基因组DNA和宿主细胞因子之间的适当相互作用,从而允许感染性病毒颗粒的形态发生。使用病毒样颗粒(VLP)和假病毒作为病毒形态发生终点进行的分析可能等同于或可能不等同于在分化宿主组织中繁殖的真实病毒。我们的器官型病毒培养系统能够支持完整的病毒生命周期,再加上我们在使用单克隆抗体研究衣壳构象方面的专业知识,使我们处于独特的地位,可以启动第一项研究,直接比较VLP自组装与真实的PV合成。这些研究将直接研究L2蛋白在真实病毒形态发生中的功能作用,包括研究L2在VLP自组装过程中的作用。我们的研究将集中在两个主要的遗传方法。人们将使用嵌合遗传学方法,通过寻找2种病毒类型相互作用蛋白质的大结构域之间的类型特异性差异来开始研究。另一种是特异性突变其他实验室暗示的与病毒体形态发生相关的功能域。为了实现我们的研究目标,我们制定了四个具体的目标:(1)研究乳头瘤病毒类型特异性结构基因的相互作用;(2)比较病毒样颗粒(VLP)组装的遗传要求与真实的病毒粒子形态发生;(3)从遗传学上分析衣壳蛋白半胱氨酸残基在病毒粒子形态发生中的作用;(4)通过突变分析研究L1衣壳蛋白N端在病毒粒子形态发生中的作用。完成后,提出的研究将首次提供新的见解病毒粒子形态发生的分子机制,在一个系统中能够复制的PV形态发生和感染的自然复杂过程中的分化环境。
英文摘要
DESCRIPTION (provided by applicant): Capsid proteins of papillomaviruses (PV) have evolved functional domains for the proper interaction between themselves, with PV viral nonstructural proteins, with PV genomic DNA, and with host cell factors, allowing for morphogenesis of infectious viral particles. Analyses performed using virus-like particles (VLPs) and pseudoviruses as an endpoint for viral morphogenesis may or may not equate to the authentic virus propagated in differentiating host tissue. Our organotypic virus culture system, capable of supporting the complete viral life cycle, coupled with our expertise in using MAbs to study capsid conformation, place us in the unique position to initiate the first studies to directly compare VLP self-assembly with authentic PV synthesis. These studies will directly investigate a functional role for L2 protein in authentic virus morphogenesis and include investigating the role of L2 in the process of VLP self-assembly. Our studies will focus on 2 main genetic approaches. One will use a chimeric genetic approach allowing investigations to begin by looking for type-specific differences between large domains of the interacting proteins of 2 viral types. The other is to specifically mutate domains that have been alluded to by other laboratories as having a function related to virion morphogenesis. To accomplish our research goals we have developed four specific aims: (1) Investigate papillomavirus type-specific structural gene interactions; (2) Compare the genetic requirements for the assembly of virus-like particles (VLPs) to authentic virion morphogenesis; (3) Genetically analyze the role of capsid protein cysteine residues in virion morphogenesis; and (4) Investigate the role of the N-terminus of the L1 capsid protein in virion morphogenesis by mutational analyses. When completed the studies proposed will for the first time provide new insight into the molecular mechanisms of virion morphogenesis in a system capable of reproducing the natural complex processes of PV morphogenesis and infection in a differentiating environment.
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