Immunological impact of Tetherin retrovirus restriction
Immunological impact of Tetherin retrovirus restriction
批准号:
8731598
负责人:
Mario Luis Santiago
金额:
$23.26万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-25 至 2016-07-31
关键词:
AcuteAdjuvantAdultAllelesAnti-Retroviral AgentsAntigen PresentationAntigen-Presenting CellsBackBackcrossingsBiologyBypassCD4 Positive T LymphocytesCD8B1 geneCell Culture TechniquesCell surfaceCellsCellular ImmunityConflict (Psychology)Controlled StudyCross PresentationDataDefectDependenceDevelopmentEndocytosisFriendsGenesGeneticGenetic EpistasisGenotypeHIV vaccineHIV-1Histocompatibility Antigens Class IIHumanHybridomasImmune responseImmune systemImmunityImmunobiologyImmunocompetentImmunologic FactorsImmunologicsImmunologyImmunotherapeutic agentImmunotherapyIn VitroInbred Strains MiceInfectionInvestigationKnock-outKnockout MiceLinkMajor Histocompatibility ComplexMediatingModelingMouse StrainsMusMutationN-terminalPathogenesisPeptidesProteinsPublishingRecyclingReportingResearchResistanceRetroviridaeRetroviridae InfectionsRoleShapesSingle Nucleotide PolymorphismSiteSorting - Cell MovementSurfaceSystemT cell responseT-LymphocyteTestingToll-like receptorsTranslationsVaccinesViralVirionVirus ReplicationWorkarmcell mediated immune responsedesignhigh riskimprovedin vivoinhibitor/antagonistinsightinterestmouse modelneutralizing antibodypandemic diseasepathogenpublic health relevancevpu Protein
中文摘要
描述(由申请人提供):免疫系统的先天手臂可以关键地塑造对病原体的适应性免疫反应。因此,对于合理的佐剂设计,先天感知机制得到了广泛的研究。相比之下,人们对直接抑制病毒复制的“限制因子”基因的免疫学影响知之甚少。Tetherin是一种被大流行HIV-1的VPU抵消的促进病毒粒子释放的蛋白质。在没有VPU的情况下,Tetherin‘拴住’细胞表面的病毒粒子。随后,这些被拴住的病毒粒子通过Tetherin介导的内吞作用被带回感染细胞。Tetherin的免疫生物学仍不清楚,体外研究引发了关于它是否作为逆转录病毒限制因子的争议。因此,将该基因分离出来用于对照研究的体内研究可能有助于提高洞察力并解决有关Tetherin功能的差异。此外,在体内研究Tetherin的生物学可能受益于扰乱其神秘的内吞功能。最近,我们发现了一种近交系小鼠,它含有Tetherin单核苷酸多态(SNP),导致内吞缺陷(Barrett等人。《公共科学图书馆·病原体》2012)。在已发表和未发表的遗传回交研究中,我们发现这种Tetherin内吞SNP对Friend逆转录病毒(FV)感染的影响依赖于主要组织相容性复合体(MHC)基因座。此外,表达Tetherin的MHC Class II+抗原提呈细胞(APC)比缺乏Tetherin的APC更能刺激Fv特异性的CD4+T细胞杂交瘤。因此,Tetherin介导的APC病毒颗粒内吞作用可能会增加MHC II类呈递的病毒肽库,并增强逆转录病毒特异性的CD4+T细胞反应。我们建议使用两个互补的系统来检验这一假设。在具体目标1中,我们将评估表达野生型、敲除和内吞缺陷Tetherin的APC在FV感染模型中刺激CD4+T细胞的能力。由于Tetherin也可能影响对MHC Class I的交叉呈递,我们也将研究CD8+T细胞的反应。在特定目标2中,我们将测试通过破坏性VPU突变启用Tetherin活性是否会使HIV-1感染的目标细胞在体外更容易受到HIV-1特异性CD4+T细胞克隆的细胞溶解和抑制作用的影响。建议的体内免疫学研究和HIV-1体外研究的一致结果可能为利用Tetherin生物学进行逆转录病毒免疫治疗和T细胞疫苗提供见解。
英文摘要
DESCRIPTION (provided by applicant): The innate arm of the immune system can critically shape the adaptive immune response against pathogens. Thus, innate sensing mechanisms have been studied extensively for rational adjuvant design. In contrast, much less is known about the immunological impact of 'restriction factor' genes that could directly inhibit virus replication. Tetherin is the protein counteracted by Vpu of pandemic HIV-1 to promote virion release. In the absence of Vpu, Tetherin 'tethers' virions on the cell surface. Subsequently, these tethered virions are brought back into the infected cell through Tetherin-mediated endocytosis. The immunobiology of Tetherin remains unknown, and in vitro studies raised controversies on whether it acts as a retrovirus restriction factor. Thus, in vivo studies that isolate the gene for controlled study may help advance insights and resolve discrepancies on Tetherin function. In addition, investigating the biology of Tetherin in vivo may benefit from disrupting its mysterious endocytic function. Recently, we identified an inbred mouse strain that harbored a Tetherin single nucleotide polymorphism (SNP) that resulted in an endocytosis defect (Barrett et al. PLOS Pathogens 2012). In published and unpublished genetic backcrossing studies, we discovered that the impact of this Tetherin endocytosis SNP on Friend retrovirus (FV) infection is dependent on the Major Histocompatibility Complex (MHC) locus. Moreover, MHC Class II+ antigen-presenting cells (APCs) expressing Tetherin stimulated an FV- specific CD4+ T cell hybridoma to a greater extent than Tetherin-deficient APCs. Thus, Tetherin-mediated virion endocytosis in APCs may increase the viral peptide pool for MHC Class II presentation and augment the retrovirus-specific CD4+ T cell response. We propose to test this hypothesis using two complementary systems. In Specific Aim 1, we will evaluate the ability of APCs expressing wild-type, knock- out and endocytosis-defective Tetherin to stimulate CD4+ T cells in the FV infection model. Since Tetherin may also impact cross-presentation to MHC Class I, we will also investigate the CD8+ T cell response. In Specific Aim 2, we will test if enabling Tetherin activity through a disruptive Vpu mutation would render the HIV-1 infected target cells more susceptible to the cytolytic and suppressive effects of HIV-1 specific CD4+ T cell clones in vitro. Concordant results from the proposed in vivo immunologic studies and HIV-1 in vitro studies may provide insights in harnessing Tetherin biology for retroviral immunotherapeutics and T-cell vaccines.
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会议论文
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