The role of Cx43 Carboxyl-terminus in the regulation of endothelial barrier function
The role of Cx43 Carboxyl-terminus in the regulation of endothelial barrier function
批准号:
9907859
负责人:
Randy Strauss
金额:
$3.92万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-02-25 至 2022-02-24
关键词:
ActinsAddressAdherens JunctionAffectAge related macular degenerationAreaBindingBiochemistryBiological AssayBloodBlood CirculationBlood VesselsCD81 geneCalciumCardiacCardiac EdemaCardiac healthCell LineCellsConfocal MicroscopyConnexin 43ConnexinsCore FacilityCoronary CirculationCryoelectron MicroscopyDataDextransEdemaEndothelial CellsEndotheliumExtravasationGoalsHeartHeart DiseasesHeart InjuriesHela CellsHumanImmunoelectron MicroscopyImmunoprecipitationImpairmentIn VitroInstitutionIntercellular JunctionsLigationLiquid substanceMass Spectrum AnalysisMeasuresMediatingMethodsModelingMolecularMyocardial tissuePeptidesPerfusionPermeabilityPlayPreparationPropertyProtocols documentationRegulationResearch InstituteResistanceResolutionResource SharingResourcesRoleScaffolding ProteinSpeedTSG101 geneTechniquesTestingTherapeuticTight JunctionsTimeTissuesTrainingTranscriptional RegulationTreesUltracentrifugationVariantVascular Endothelial Growth FactorsVesicleVirginiaWestern BlottingWorkanalogbaseelectric impedanceexosomeexperienceexperimental studyextracellular vesiclesinnovationknock-downmedical schoolsmonolayernanoparticleneglectnovelpeptidomimeticspolymerizationpreventprotein protein interactiontherapeutic targettissue injurytooltraining projectvectorzonula occludens-1 protein
中文摘要
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英文摘要
Project Summary/Abstract
Most forms of heart disease are associated with a breakdown of the cardiac endothelial barrier, resulting in a
damaging leakage and buildup of fluid between blood vessels and the heart tissue (also known as cardiac edema).
Treatment has largely focused on heart muscle tissue as a therapeutic target but the endothelium, which plays a
critical role in the health of the heart, has been neglected. Multiple studies have demonstrated the involvement
of Cx43 in endothelial barrier function and permeability. Preliminary data shows that the Carboxyl-terminus
(CT) of Cx43 interacts with both tight junction scaffolding protein Zonula Occludens 1(ZO-1) as well as native
Cx43 itself. Furthermore, evidence suggests that endothelial cells might generate freely acting small CT
fragments as an endogenous mechanism to self-regulate barrier properties. Using both classical and automated
in vitro methods of measuring resistance/impedance across cell monolayers, we demonstrated that αCT1, a Cx43
CT mimetic peptide, prevented VEGF-mediated breakdown of barrier function and stabilized tight junctions in
a model of Age-Related Macular Degeneration (AMD). Moreover, utilizing Electric Cell-substrate Impedance
Sensing (ECIS), an automated, impedance-based method used to study the activities of cells grown in culture in
real time, we determined that ɑCT1 recovered barrier function in a human microvascular endothelial cell line
(HMEC1). Recent experiments from our lab indicated the presence of hitherto uncharacterized, naturally
occurring αCT1-like Cx43 CT fragments, which might be packaged within small, extracellular vesicles called
exosomes. Our overarching goal is to determine how endothelial cells might utilize an endogenously generated
αCT1-like fragment to affect barrier function. Our specific aims are to: 1) Test the hypothesis that Cx43 CT
mimetic peptides protect barrier function via interaction with: 1) ZO-1 and/or 2) Cx43 and 2) Test the hypothesis
that endothelial cells generate naturally occurring αCT1-like Cx43 CT fragments. Exogenous application of Cx43
CT mimetic peptides, αCT1 and variants (that are either ZO-1 and/or Cx43-binding incompetent) will be used as
a tool, to instruct us on the homeostatic functions and mechanisms of endogenous Cx43 and its interactions with
binding partners. Western blotting, immunoprecipitation, confocal microscopy, exosome isolation, cryo-electron
microscopy and tandem mass spectroscopy will be employed to determine the presence or absence of αCT1-like
Cx43 CT fragments in exosomes derived from Cx43-eGFP Hela cell line expressing wildtype Cx43 and a Cx43-
expressing HMEC1 cell line, as well as from ex vivo cardiac preparations. Understanding how the Cx43 CT affects
barrier function could be key to advancing novel endothelial barrier stabilizing therapeutics for treating cardiac
edema. Training for this project will utilize core facilities and resources shared across Virginia Tech Carilion
Research Institute in Roanoke, VA and Virginia Tech's main campus in Blacksburg, VA. A number of highly
experienced academics at Virginia Tech, and institutions outside of Virginia Tech, are prepared to aid in the
execution of this 3-year project by providing training and other key resources.
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The role of Cx43 Carboxyl-terminus in the regulation of endothelial barrier function
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批准号:10094237
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项目类别:
-
资助金额:$2.53万
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财政年份:2019
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负责人:Randy Strauss
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依托单位:
海外基金