Spatiotemporal Control of Dynamic Notch Signaling with Subcellular Resolution
Spatiotemporal Control of Dynamic Notch Signaling with Subcellular Resolution
批准号:
8901248
负责人:
Young-wook Jun
金额:
$29.31万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-01 至 2019-07-31
关键词:
AddressAtomic Force MicroscopyBehaviorBiological ProcessCalibrationCell CommunicationCell LineCell NucleusCell surfaceCellsChemistryCritical PathwaysDevelopmentDiagnosticDimensionsDiseaseElementsEndocytosisEventExertionGenesGoalsHandHealthHumanImageImageryIn SituIn VitroIndividualIntracellular translocationInvestigationKnowledgeLabelLifeLigandsLocationLymphomaMagnetismMaintenanceMalignant NeoplasmsMeasuresMechanicsMediatingMethodsModelingMolecularMonitorMultiple SclerosisNanotechnologyNormal tissue morphologyNucleic Acid Regulatory SequencesOligonucleotidesOpticsPlayPopulationProcessPropertyProteinsProteolysisReceptor ActivationReceptor SignalingRegulationResolutionRoleSignal TransductionSpatial DistributionStem cellsSystemTechniquesTechnologyTherapeuticTimeangiogenesiscell behaviordesigninnovationmagnetic fieldnanoparticlenanoprobenanosystemsnerve stem cellneurodevelopmentnext generationnotch proteinplasmonicsreceptorresearch studysignal processingsingle moleculespatiotemporalstem cell therapytool
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Notch signaling is a highly conserved cell-to-cell communication mechanism, which plays a central role in defining individual cells' behaviors and fates during development. Despite rapidly increasing knowledge of these signaling events, little is known about how spatiotemporal dynamics of receptor signaling across the cell influence signal exchange. To address this challenge, we propose an advanced nanosystem that mimics, enabling simultaneous real-time monitoring and in situ regulation of Notch signaling in a particular cell at any desired location and time with subcellular resolution. Using this new nanotechnology, we first determine force-induced structural features of Notch receptors. We also explore Notch signaling in neural stem cells to determine how the spatiotemporal distribution of Notch signaling across a cell population influences the final fate of individual cels during development. Binary cell communication via Notch.
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海外基金