Role of Blk in gamma delta T cell development and function
Role of Blk in gamma delta T cell development and function
批准号:
7661028
负责人:
Sandra Marie Hayes
金额:
$19.63万
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:
2009-02-15 至 2011-01-31
关键词:
AddressAffectAntigen ReceptorsAntigensAreaBiologicalCD3 AntigensCell LineageCell ProliferationCellsCellular biologyCloningComplexCoupledDefectDevelopmentEmployee StrikesFamilyFamily memberFoundationsFutureGene Expression ProfilingGenesGoalsImmuneImmune responseImmunityInfectionInvestigationKnowledgeLearningLipidsLymphocyteLymphocyte-Specific p56LCK Tyrosine Protein KinaseLymphoidMature T-LymphocyteMeasuresMediatingMembraneModelingModificationMusPatternPhosphorylationPhosphotransferasesPlayPopulationProcessPropertyProtein Tyrosine KinaseReceptor CellReceptor GeneReceptor SignalingResearch ProposalsResistanceRoleSignal PathwaySignal TransductionSignaling MoleculeSpecificityStructureSurfaceT-Cell DevelopmentT-Cell ReceptorT-LymphocyteTestingVaccine DesignWound Healingbasecrosslinkdimerimprovedneoplastic cellpathogenprogramspublic health relevancereceptor couplingrelease of sequestered calcium ion into cytoplasmresearch studyresponsesrc-Family Kinasesstemthymocytetumor
中文摘要
描述(由申请人提供):在所有携带抗原受体的淋巴细胞中,T细胞是最不为人所知的。这种差异源于T细胞是通过克隆TCR和-基因发现的,而不是通过它们的功能特性发现的。自从二十多年前被发现以来,我们已经了解到T细胞识别一组不同于T细胞的抗原,并在免疫中发挥独特的作用,正如它们介导伤口愈合和肿瘤监测的能力所证明的那样。然而,尽管在T细胞生物学领域取得了这些进展,但对T细胞抗原受体(TCR)的结构和信号特性仍然知之甚少。最近,我们对TCR在离体T细胞上的亚基组成和信号传导潜力进行了详细的分析。我们发现:(1)-和TCR的信号转导复合物的亚基组成存在显著差异,与TCR不同,TCR缺乏CD3二聚体;(2)通过钙动员、ERK激活和细胞增殖测量,CD3交联后,TCR的信号转导比TCR的信号转导更强。这种意想不到的-和TCR信号潜能的差异导致了我们对T细胞发育和功能的理解的修订。在本研究方案中,我们假设观察到的-和TCR信号转导的差异是由于与-和TCR耦合的细胞内信号通路的差异。为了研究这一点,我们采用了全局基因表达谱来识别成熟细胞和T细胞群体中差异表达的信号分子。出乎意料的是,我们发现B淋巴样激酶(Blk), Src家族蛋白酪氨酸激酶(PTK)通常在B系细胞中表达,在T细胞中表达,而在T细胞中不表达。本研究计划的目的是确定T细胞中Blk表达的生物学意义。具体来说,我们将1)表征Blk在谱系细胞中的表达模式、亚细胞定位和活性,2)分析Blk -/-小鼠谱系细胞的承诺、发育和效应功能。这项拟议的研究将增加我们对具体控制T细胞发育和功能的过程的了解。此外,本研究的结果将为未来的研究提供基础,旨在测试Src PTK家族成员在和T细胞中表达的这种质的差异是否有助于增强TCR的信号传导能力。公共卫生相关性:预计这项研究将提供关于T细胞的重要信息。这一知识将有助于设计疫苗,旨在通过特异性靶向T细胞来提高对肿瘤细胞和病原体的抵抗力。
英文摘要
DESCRIPTION (provided by applicant): Of all the lymphocytes bearing antigen receptors, T cells are the least understood. This disparity stems from the fact that T cells were discovered by the cloning of the TCR and - genes and not by their functional properties. Since their discovery over two decades ago, we have learned that T cells recognize a different set of antigens than T cells and play unique roles in immunity, as evidenced by their ability to mediate wound healing and tumor surveillance. However, despite these advances in the area of T cell biology, the structure and signaling properties of the T cell antigen receptor (TCR) remain poorly understood. Recently, we performed a detailed analysis of the subunit composition and signaling potential of the TCR on ex vivo T cells. We found: (1) a striking difference in the subunit composition of the signal-transducing complexes of the - and TCRs, in that TCRs, unlike TCRs, lack CD3 dimers and (2) signal transduction by the TCR to be more robust than that of the TCR after CD3 crosslinking as measured by calcium mobilization, ERK activation and cellular proliferation. This unexpected difference in - and TCR signaling potential has resulted in a revision in our understanding of T cell development and function. In this research proposal, we hypothesize that the observed differences in - and TCR signal transduction are due to differences in the intracellular signaling pathways coupled to the - and TCRs. To investigate this, we employed global gene expression profiling to identify signaling molecules that are differentially expressed in mature and T cell populations. Unexpectedly, we found that B lymphoid kinase (Blk), a Src family protein tyrosine kinase (PTK) normally expressed in B lineage cells, is expressed in T cells but not in T cells. The goal of this research proposal is to determine the biological significance of Blk expression in T cells. Specifically, we will 1) characterize the expression pattern, subcellular localization, and activity of Blk in lineage cells and 2) analyze commitment, development and effector function of lineage cells in blk-/- mice. The proposed study will increase our knowledge of the processes that specifically govern the development and function of T cells. In addition, the results from this investigation will provide a foundation for future studies aimed at testing whether this qualitative difference in the expression of Src PTK family members in and T cells contributes to the enhanced signaling proficiency of the TCR. Public Health Relevance: It is expected that this study will provide important information about T cells. This knowledge will aid in the design of vaccines aimed at improving resistance to tumor cells and pathogens by specifically targeting T cells.
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会议论文
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Role of Blk in gamma delta T cell development and function
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海外基金