PIP3-INDEPENDENT REGULATION OF AKT1 ACTIVITY IN T CELLS
PIP3-INDEPENDENT REGULATION OF AKT1 ACTIVITY IN T CELLS
批准号:
8675320
负责人:
Yina Hsing Huang
金额:
$22.68万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-02-15 至 2016-01-31
关键词:
AKT1 geneAffinityAneurysmAutoimmune DiseasesAutoimmunityAvidityB-Cell ActivationBindingBinding ProteinsBiologicalCD8B1 geneCalmodulinCell ExtractsCell MaturationCell Surface ReceptorsCell SurvivalCell physiologyCellsCellular biologyChemicalsChildCoronary arteryDataDefectDependenceDevelopmentFamilyGenerationsGenesGrantHeadHomologous GeneHumanImmuneImmune responseIn VitroInfiltrationInositolKineticsLigandsLinkMembraneMembrane LipidsMolecularMolecular ConformationMucocutaneous Lymph Node SyndromeMusPH DomainPathway interactionsPeripheralPhosphorylationPhosphotransferasesPredispositionProductionProtein IsoformsProtein-Serine-Threonine KinasesProteinsProteomicsProto-Oncogene Proteins c-aktProto-OncogenesReceptor SignalingRegulationRegulatory T-LymphocyteRelative (related person)ReportingRoleSecond Messenger SystemsSignal TransductionSignaling ProteinSingle Nucleotide PolymorphismT-Cell DevelopmentT-Cell ImmunodeficiencyT-Cell ReceptorT-LymphocyteT-Lymphocyte SubsetsTEC Protein Tyrosine KinaseTestingThymocyte SelectionTissuesanalogcell growthin vivomigrationmutantneutrophilnovelplatelet protein P47protein functionpublic health relevanceresponsesecond messengertherapeutic targetthymocyte
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): IP4 is a newly discovered second messenger that we identified to be critical for T cell development and activation. How IP4 transmits T cell receptor signals to induce thymocyte maturation remains unclear. Its chemical similarity to the membrane lipid PIP3 suggests that it co-regulates PIP3-effectors, including the serine/threonine kinase AKT. In this grant, we propose that AKT is an important effector pathway downstream of IP4 that contributes to the development of mature CD4 or CD8 T cells and regulatory T cells. We hypothesize that IP4 promotes AKT activity through release of active AKT from the membrane and by facilitating AKT binding to Calmodulin, a Ca2+ sensing regulator of protein function. To test this hypothesis, we present three specific aims. In the first, we will characterize AKT binding to IP4 and PIP3 individually and by competitive inhibition analysis. Second, we will determine how IP4 regulates AKT localization, activation and phosphorylation of downstream effectors. Lastly, we will examine the importance of Calmodulin binding on AKT function in vivo and determine its dependence on IP4. We hope that elucidating the mechanism by which IP4 regulates AKT activity will allow a better understanding of how developmental signals precisely and differentially induce AKT activation to promote the maturation of different T cell subsets. Our long term objective is to characterize how IP4 relays signals from T cell surface receptors to direct specific and protective immune responses.
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