Understanding the role of NF-kB in T-regulatory cell function
Understanding the role of NF-kB in T-regulatory cell function
批准号:
8487127
负责人:
Sankar Ghosh
金额:
$37.6万
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:
2006-02-01 至 2017-12-31
关键词:
AcuteAffectAnimalsApplications GrantsAutoantigensAutoimmune ProcessAutoimmunityAwarenessBiochemicalBiological AssayCell physiologyCellsChemicalsChronicDefectDevelopmentDiseaseEffector CellEquilibriumFailureFunctional disorderGene ExpressionGene Expression ProfilingGenerationsGenesGeneticGenetic ProgrammingHomeostasisHomingImmuneImmune responseImmune systemIn VitroIndiumInflammationInflammatoryInsulin-Dependent Diabetes MellitusLaboratoriesLeadMaintenanceMediatingMusNF-kappa BNaturePDPK1 genePathway interactionsPhenotypePhosphotransferasesPlayProcessProductionProtein KinaseRegulatory PathwayRegulatory T-LymphocyteRelative (related person)ReportingRoleSignal PathwaySignal TransductionSignaling ProteinT-LymphocyteTNF geneWorkcell typecytokinein vivoin vivo Modelinhibitor/antagonistinsightmigrationp65pathogenpreventprogramspublic health relevanceresearch studyresponsethymocytetranscription factor
中文摘要
描述(由申请人提供):维持免疫稳态对生存至关重要。除了提供病原体的有效清除外,一个精心平衡的免疫系统还必须通过防止对自身抗原的反应来限制自身免疫。最近对t -调节性(Treg)细胞的表征揭示了一种主要的调节途径,用于防止免疫系统的不适当激活和维持体内平衡。t调节细胞要么在胸腺发育过程中产生(tTregs),要么在暴露于特定细胞因子环境的外周效应细胞(诱导T-regs或iTregs)中产生。现在已经确定,所有treg都以转录因子Foxp3的表达为特征,Foxp3协调基因的产生,帮助介导这些细胞的效应功能。我们实验室最近的工作表明,蛋白激酶PDK1和转录因子NF-?B在Treg的发育和功能中起关键作用。在广泛的初步研究中,我们现在已经证明NF-?B是Treg功能的关键调节因子。然而,NF-到底如何?B对Treg功能的影响尚不清楚。在这项拨款申请中,我们将研究NF-?B在Tregs中的表达超出了其调节Foxp3表达的作用。在第一个目标中,我们将确定NF-?B通过删除NF-?参与FoxP3表达后Treg的分化。B诱导。在第二个目标中,我们将描述由NF- B控制的Tregs中的遗传程序。最后,在第三个目标中,我们将确定哪个信号通路负责激活NF-?并探讨PKC在Tregs中的作用。在这个过程中。
英文摘要
DESCRIPTION (provided by applicant): Maintenance of immune homeostasis is crucial for survival. In addition to providing effective clearance of pathogens, a carefully balanced immune system must also limit autoimmunity by preventing responses against self-antigens. The recent characterization of T-regulatory (Treg) cells has revealed a major regulatory pathway that is utilized to prevent inappropriate activation of the immune system and maintain homeostasis. T-regulatory cells arise either during thymic development (tTregs), or are generated in the periphery from effector cells exposed to particular cytokine milieu (induced T-regs or iTregs). It is now well established that al Tregs are characterized by the expression of the transcription factor Foxp3, which orchestrates the production of genes that help mediate the effector functions of these cells. Recent work in our laboratory has revealed that the protein kinase PDK1 and the transcription factor NF-?B play a critical role in Treg development and function. In extensive preliminary studies we have now demonstrated a clear involvement of NF-?B as a critical regulator of Treg function. However, exactly how NF-?B influences Treg function remains unclear. In this grant application we will investigate the role of NF-?B in Tregs beyond its role i regulating the expression of Foxp3. In the first aim we will determine whether NF-?B plays a role in Treg differentiation subsequent to FoxP3 expression by deleting NF-?B inducibly. In the second aim, we will characterize the genetic program in Tregs that is controlled by NF-?B. Finally, in the third aim, we will determine which signaling pathway is responsible for activating NF-?B in Tregs, and explore the role of PKC? in this process.
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海外基金