GPCR Signaling and Vascular Wall Remodeling
GPCR Signaling and Vascular Wall Remodeling
批准号:
9312305
负责人:
GADIPARTHI N RAO
金额:
$47.59万
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:
2011-04-01 至 2020-06-30
关键词:
ARHGEF1 geneATF2 geneATP binding cassette transporter 1ATP-Binding Cassette TransportersAddressApolipoprotein EApplications GrantsArterial Fatty StreakAtherosclerosisAttenuatedBlood PlateletsBlood VesselsBlood coagulationCD36 geneCause of DeathChemotactic FactorsCholesterolChronic DiseaseClustered Regularly Interspaced Short Palindromic RepeatsComplexDataDissociationDominant-Negative MutationDoseEMSAEndothelial CellsEnvironmental Risk FactorEventFibroblastsFoam CellsFunctional disorderFundingG Protein-Coupled Receptor SignalingGAB1 geneGenetic RiskInflammationKnowledgeLesionLinkLuciferasesMediatingMessenger RNAMitogensMusMuscle CellsMyocardial InfarctionPAR-1 ReceptorPathogenesisPeritoneal MacrophagesPharmacologyPlayProteinase-Activated ReceptorsProteinsPubMedRegulatory ElementReportingRoleSerine ProteaseSignal TransductionSite-Directed MutagenesisSmall Interfering RNASmooth Muscle MyocytesSocietiesStrokeTestingThrombinThrombosisThrombusTime StudyUbiquitinationVascular DiseasesVascular Smooth Muscleatherogenesisatherothrombosisbasecell typecholesterol transporterschromatin immunoprecipitationcullin-3experimental studyfeedinginsightmacrophagemigrationmonocytemortalitynoveloverexpressionoxidized lipidoxidized low density lipoproteinpromoterreceptorresponsescaffoldscavenger receptortranslational impactubiquitin-protein ligaseuptakewestern diet
中文摘要
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英文摘要
Atherosclerosis is a chronic disease of arterial wall caused by various genetic and environmental risk factors
and is the foremost cause of mortality worldwide. Inflammation plays a critical role in atherogenesis. Protease-
activated receptor 1 (Par1) that mediates the cellular effects of thrombin, a serine protease, has been reported
to play an important role in inflammation. In addition, a large body of data suggests that Par1 plays an
essential role in atherothrombosis. Despite the role of Par1 in inflammation and atherothrombosis and the fact
that increased expression of Par1 is observed in atherosclerotic plaques, nothing is known about its role in
atherogenesis. In this context, we recently discovered that thrombin induces the expression of CD36, a
scavenger receptor linked to oxLDL uptake and foam cell formation, and this event requires Gα12/13, Pyk2,
Gab1, PKCθ and ATF2 activation downstream to Par1. In addition, we found that thrombin induces the
depletion of ABCA1, a reverse cholesterol transporter and attenuates cholesterol efflux. Interestingly, ABCA1
was found to exist in complex with GSK3β and, upon treatment with thrombin, it dissociates from GSK3β,
associates with cullin 3, a component of E3 ligases, and undergoes degradation. Based on these novel
observations, we hypothesize that thrombin-Par1 axis plays a major role in atherogenesis. To test this central
hypothesis, we propose to address the following three specific aims: Specific Aim 1: Par1 plays a central role
in atherogenesis. Specific Aim 2: PKCθ via activating ATF2 and enhancing CD36 expression, oxLDL uptake
and foam cell formation plays a crucial role in atherogenesis. Specific Aim 3: Overexpression of GSK3β
stabilizes ABCA1, enhances cholesterol efflux and protects from atherogenesis. The results of the proposed
studies will provide new mechanistic insights into the pathophysiology of atherosclerosis and explore the
translational impact of thrombin-Par1 signaling in this debilitating vascular disease.
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会议论文
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