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Mutations in Smooth Muscle Contractile Proteins: Pathways to Vascular Diseases

Mutations in Smooth Muscle Contractile Proteins: Pathways to Vascular Diseases
平滑肌收缩蛋白突变:血管疾病的途径
批准号:
8339642
负责人:
DIANNA M MILEWICZ
金额:
$216.06万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-25 至 2017-07-31
关键词:
ActinsActomyosinAddressAdhesionsAffectAgeAgonistAllelesAmino AcidsAneurysmAortic AneurysmAortic DiseasesArteriesAttenuatedAutomobile DrivingBenignBindingBiologicalBiological AssayBiomechanicsBlood VesselsBudgetsCancer EtiologyCarotid Artery InjuriesCell physiologyCellsCellular AssayChestClinicalCollaborationsColon CarcinomaConnective TissueContractile ProteinsCoronary ArteriosclerosisDNA Sequence RearrangementDataDefectDermalDevelopmentDiagnosticDiagnostic testsDilatation - actionDiseaseDisease ProgressionDissectionDoctor of MedicineDoctor of PhilosophyDrug FormulationsElastinElectron MicroscopyEvolutionF-ActinFibroblastsFilamentFocal Adhesion Kinase 1Focal AdhesionsFunctional disorderGenerationsGenesGenetic PolymorphismGenetic ResearchGenotypeGoalsHealth SciencesHomoHumanImageImatinibImpairmentIn VitroIndividualInheritedInvestigationKineticsKnock-outLaboratoriesLasersLeadLengthLesionLinkMYH11 geneMYLK geneMedical centerMicrofilamentsMissense MutationMitochondriaMolecularMotionMusMuscleMuscle ContractionMutant Strains MiceMutationMyofibroblastMyosin ATPaseMyosin Light Chain KinaseOutputOxidative StressPDGFRB genePathogenesisPathologicPathologic ProcessesPathologyPathway interactionsPatientsPenetrancePennsylvaniaPerformancePhenotypePhosphorylationPhosphotransferasesPlatelet-Derived Growth Factor beta ReceptorPoint MutationProcessProductionProgram Research Project GrantsPropertyProtein IsoformsProteinsReactive Oxygen SpeciesRecruitment ActivityRegulationResearchResearch PersonnelResearch Project GrantsRiskRoleSignal PathwaySignal TransductionSlideSmooth MuscleSmooth Muscle Actin Staining MethodSmooth Muscle MyocytesSmooth Muscle MyosinsStaining methodStainsStressStrokeStructureSystemTechnical ExpertiseTestingTexasThick FilamentThin FilamentThoracic Aortic AneurysmTimeTissuesTransgenic MiceTropomyosinTyrosine Kinase InhibitorUniversitiesVariantVascular DiseasesVasomotorVermontWorkactin 2age relatedalpha Actinascending aortaassay developmentbasebeta-Myosincell motilitydesignearly onsetfrontiergain of functiongenetic varianthigh riskin vitro Assayin vivoinhibitor/antagonistinsightloss of functionmolecular imagingmonomermouse modelmutantnovelpaxillinpolymerizationpreventprogramsprotein expressionprotein functionreceptorresponseresponse to injurysingle moleculetherapeutic target

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英文摘要
Vascular SMCs are arranged circumferentially in arteries in multiple layers, either embedded between layers of elastin lamellae in large elastic arteries or in a matrix of connective tissue in smaller muscular arteries. For contractile function, SMCs express smooth muscle specific isoforms of alpha-actin and Beta-myosin, which multimerize to form thin and thick filaments, respectively. We have determined that mutations in the genes encoding SMC alpha-actin and Beta-myosin, ACTA2 and MYH11, along with the kinase that controls SMC contraction, myosin light chain kinase (MYLK), predispose individuals to vascular diseases, including thoracic aortic aneurysms and aortic dissections and occlusive vascular diseases, such as early onset coronary artery disease and stroke. The Program Project Grant (PPG) will test the hypothesis that the ACTA2, MYH11 and MYLK mutations lead to thoracic aortic and disease and/or occlusive vascular diseases due to a differential SMC response to biomechanical stresses resulting from dysfunction of the contractile unit. We hypothesize that mutations in these genes cause a ¿loss of function¿, specifically loss of regulation or altered force output of contractile unit in SMCs in ascending aorta, resulting in increased biomechanical stresses and activation of SMC pathways leading to thoracic aortic aneurysms and aortic dissections. In contrast, we hypothesize that the occlusive vascular diseases associated with a subset of ACTA2 mutations, and possibly MYH11 variants, result from a SMC "gain of function" in muscular arteries, specifically increased SMC proliferation as a consequence of altered focal adhesions and activation of PDGFR-Beta receptors in response to abnormal cellular force generation. To test these hypotheses. Project 1 and 2 will assess the Impact of ACTA2 and MYH11 genetic variants on kinetics, motility, regulation, and filament formation in vitro. Project 3 will assess age-dependent derangements in specific signaling modules responsible for vasomotor responsiveness in vascular SMCs in mouse models of select ACTA2, MYH11 and MYLK mutations. Project 4 will Investigate SMC cellular pathways leading to thoracic aortic disease and SMC proliferation in these same mouse models.
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2023 Elastin, Elastic Fibers and Microfibrils Gordon Research Conference and Gordon Research Seminar
  • 批准号:
    10754079
  • 项目类别:
  • 资助金额:
    $3.01万
  • 财政年份:
    2023
  • 负责人:
    DIANNA M MILEWICZ
  • 依托单位:
Medical Scientist Training Program
Novel genetic Insight into the molecular pathogenesis of atherosclerosis
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国内基金
海外基金
由actomyosin介导的集体性细胞迁移对唇腭裂发生的影响的研究
  • 批准号:
    82360313
  • 项目类别:
    地区科学基金项目
  • 资助金额:
    32万元
  • 批准年份:
    2023
  • 负责人:
    滕藤
  • 依托单位: