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Wnt Regulation of Cell Cycle in Cortical Neurogenesis

Wnt Regulation of Cell Cycle in Cortical Neurogenesis
Wnt 调节皮质神经发生中的细胞周期
批准号:
7450754
负责人:
IAN T ROSSMAN
金额:
$1.5万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-01 至 2008-10-31
关键词:
AcuteAdultAffectAttentionAutistic DisorderBiological AssayBrainBromodeoxyuridineCDKN1C geneCell CountCell CycleCell Cycle ProteinsCell Cycle RegulationCell DensityCell LineCell ProliferationCellsCerebrumComplexComputer Systems DevelopmentConditionConditioned Culture MediaCultured CellsCyclin D1Cyclin ECyclin-Dependent Kinase InhibitorCyclin-Dependent KinasesCyclinsDNADNA biosynthesisDNA chemical synthesisDataDevelopmentDiseaseDisruptionElectroporationEmbryoEpilepsyEventFamilyFellowshipFibroblast Growth Factor 2FibroblastsFoundationsG CellsGreen Fluorescent ProteinsGrowthGrowth FactorGrowth and Development functionHippocampus (Brain)ImmunoprecipitationImpaired cognitionIn VitroIndividualInjection of therapeutic agentInterneuronsKnock-outKnowledgeLabelLeadLigandsLong-Term EffectsMaintenanceMeasuresMediatingMental DepressionMethodologyMethodsMitogensMitosisMitoticModelingMolecularMonitorNamesNervous system structureNeuronsNuclearPathway interactionsPhasePhase TransitionPhosphotransferasesPhysiologic pulsePlayPopulationPositioning AttributeProcessProductionProsencephalonPulse takingPurkinje CellsRattusRegulationRoleRole playing therapySchizophreniaSignal TransductionStructureSystemTestingThymidineTimeTissuesTransfectionVentricularWestern Blottingbasecancer cellcyclin E-dependent kinasecyclin-dependent kinase inhibitor 1Bdaydevelopmental diseaseexpression vectorextracellularfallsgenetic regulatory proteinin vivoindexingmembermigrationnervous system disorderneurogenesisneurophysiologyoncoprotein p21pituitary adenylate cyclase activating polypeptideprecursor cellprotein expressionreceptorresponsesingle cell analysissizetoolvector

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英文摘要
DESCRIPTION (provided by applicant) Wnts are extracellular signals known to regulate neurogenesis in regions associated with developmental diseases such as autism and schizophrenia, yet cell cycle mechanisms mediating these effects remain undefined. We aim to study Wnt-3a's role in forebrain neurogenesis and G1 cell cycle machinery regulation in culture, and in vivo, as follows: l) Embryonic rat cortical cell cultures will be treated with media conditioned by fibroblasts transfected with Wnt-3a constructs. S-phase entry will be assessed by [3H]Thymidine incorporation, and characterized cellularly by bromodeoxyuridine labeling. 2) Wnt-3a's effects on cell cycle regulatory protein levels, including D and E cyclins, cyclin dependent kinases (CDKs), and CIP/KIP CDK inhibitors, will be measured by western blotting, and cyclin/CDK complex activity will be assessed by kinase assays. 3) Acute effects of Wnt-3a on proliferation and cell cycle regulation in vivo, will be determined using transuterine intracerebroventricular (ICV) injection. Sustained effects on neurogenesis will be assessed using GFP:Wnt-3a co-transfection by cell electroporation. Defining these mechanisms mediating Wnt signaling in brain development is critical to understanding and treating pervasive neurological diseases.
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Wnt Regulation of Cell Cycle in Cortical Neurogenesis
Wnt Regulation of Cell Cycle in Cortical Neurogenesis
Wnt Regulation of Cell Cycle in Cortical Neurogenesis
Wnt Regulation of Cell Cycle in Cortical Neurogenesis
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