Polarizing T Cell Responses in vivo With Dendritic Cells
Polarizing T Cell Responses in vivo With Dendritic Cells
批准号:
9542326
负责人:
BALI PULENDRAN
金额:
$39.25万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-01 至 2020-08-31
关键词:
AblationAmino AcidsAnti-inflammatoryAntigen PresentationAutoantigensAutoimmune DiseasesAutoimmunityAutophagocytosisCellsDataDendritic CellsEpithelial CellsEquilibriumExtracellular Signal Regulated KinasesFailureGoalsImmune ToleranceImmune responseImmune systemImmunityImpairmentIndividualInflammasomeInflammationInflammation MediatorsInflammatoryInflammatory Bowel DiseasesInflammatory disease of the intestineInstructionInterleukin-10IntestinesKnockout MiceMEKsMediatingMicrobeMitochondriaMolecularMucosal ImmunityMusPathologyPathway interactionsPhosphotransferasesPredispositionProductionPropertyReactive Oxygen SpeciesRegulatory T-LymphocyteResearchRoleSignal PathwaySignal TransductionStarvationT cell responseTLR2 geneTestingVirusWorkautoreactivitybeta cateninbiological adaptation to stressdetection of nutrientimprintin vivoinsightmembernovelnovel therapeutic interventionprogramsresponseretinoic acid 4-hydroxylasesensortranscription factor
中文摘要
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英文摘要
Emerging evidence suggests a central role for dendritic cells (DCs) in inducing immune tolerance. Our recent
research has provided critical new insights into the molecular mechanisms that “program” DCs to induce
tolerogenic responses. In particular, we have observed an unappreciated intersection between the ancient
nutrient-sensing pathway, involving the amino acid sensing molecule GCN2, and control of inflammation in
the gut. Given the central role of GCN2 as a sensor of amino acid starvation, we explored its’ potential role in
the intestine, and observed its remarkable effects on modulating the functions of intestinal DCs and epithelial
cells to control inflammation in the gut. In this context the goal of the research proposed here is to determine
the mechanisms by which GCN2 and this stress response pathway regulate gut inflammation.
Aim 1: To determine the mechanism by which the GCN2-eIF2α pathway regulates intestinal immunity
and inflammation. Our preliminary data demonstrates that GCN2-/- mice display enhanced susceptibility to
intestinal inflammation and strikingly enhanced Th17 responses. Here we will explore the effects of
conditional ablation of GCN2 expression in DCs versus intestinal epithelial cells, and whether these effects
are dependent on down the downstream kinase eIF2α.
Aim 2: To determine the cause and consequence of excess reactive oxygen species (ROS)
production in GCN2 deficient mice. Our preliminary data show that GCN2-/- mice have enhanced intestinal
inflammation and elevated levels of ROS in gut DCs and epithelial cells. In this aim we propose to determine
the cause and consequence of excess ROS production in the GCN2-/- mice.
Aim 3: To determine the mechanism by which GCN2 suppresses inflammasome activation. Finally,
our preliminary data demonstrates increased inflammasome activation in gut DCs and epithelial cells in
GCN2-/- mice. In this aim, we will determine whether this inflammasome activation is essential for enhanced
intestinal inflammation and Th17 responses.
The successful completion of these aims will provide new mechanistic insights into how this stress response
pathway controls intestinal inflammation, and provide new therapeutic strategies against autoimmunity.
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Administrative Core
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批准号:10584554
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Systems biological assessment of innate and adaptive immunity to vaccination
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依托单位:
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Polarizing T Cell Responses in vivo With Dendritic Cells
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依托单位:
海外基金