Mechanisms of Tangential Neuron Migration
Mechanisms of Tangential Neuron Migration
批准号:
9224680
负责人:
Cecilia B Moens
金额:
$6.95万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-01 至 2018-05-31
关键词:
ActinsAffectAnteriorApicalAxonBehaviorBiological ModelsBirth PlaceBrainCell AdhesionCell CommunicationCell Culture TechniquesCell ShapeCell divisionCell physiologyCellsCellular biologyCerebellumCharacteristicsCloningCytoplasmic GranulesDevelopmentDiseaseDominant-Negative MutationEnvironmentEpithelial CellsEpitheliumExtracellular Matrix DegradationFaceFacial nerve structureFiberGene Transfer TechniquesGenesGeneticGenetic ScreeningGoalsHealthHumanImageImaging DeviceImmigrationLifeLinkLocationMalignant NeoplasmsMembrane Protein TrafficMitoticModelingMolecularNeural Crest CellNeural Tube ClosureNeurodevelopmental DisorderNeuronsPathway interactionsProcessProteinsRadialRoleSignal TransductionSpinal DysraphismStereotypingStreamSurfaceSystemTestingTissuesTransgenic OrganismsVentricularVisualWingZebrafishanalytical toolcell behaviorcell motilitycell typeciliopathycilium biogenesisdirectional cellflyforward geneticsgastrulationhindbrainin vivomigrationmutantnerve stem cellneuroepitheliumplanar cell polaritypolarized cellreconstitutionresearch studyreverse geneticstool
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Almost all neurons in the vertebrate brain are "foreign born" - that is, they are born at or near the ventricular surface and then migrate to another location where they make their connections and carry out their specialized functions. Neuronal migrations can be radial, parallel to the api- co-basal axis of the neuroepithelium, or they can be
tangential: orthogonal to the apical-basal axis - i.e., in the plane of the neuroepithelium. With te goal of discovering genetic mechanisms regulating directed neuronal migration, we have established the facial branchiomotor neurons (FBMNs; cranial nerve VII), which undergo a stereotyped and evolutionarily conserved tangen- tial migration from hindbrain rhombomere (r)4 to r6, as a model system in our lab. Forward ge- netic screens in our lab and others have identified multiple core components of the Planar Cell Polarity (PCP) pathway as being essential for FBMN migration. The PCP pathway is best under- stood as a cell contact-dependent molecular mechanism for generating and transmitting polarity between cells in the plane of an epithelium. However PCP has been implicated in a growing number of cell migrations during development and disease states. Currently no coherent model exists for how PCP regulates directional cell migration. This is mainly because the polarized cell- cell interactions that defin PCP are difficult to reconstitute in cell culture; we must therefore attack the problem in vivo. Th zebrafish model, with its exquisite live imaging, facile transgen- esis and powerful forward and reverse genetics tools, affords us this opportunity. We hypothe- size that direct PCP signaling between the planar-polarized cells of the neuroepithelium and the motile FBMNs polarizes FBMN protrusive activity in the direction of migration. We pro- pose to test the predictions of thi model first by identifying the cells in the migratory environ- ment that are responsible for directing migration (Aim 1), and then by elucidating how PCP sig- naling within the FBMNs affects their behavior in vivo (Aim 2). Furthermore in Aim 2 we will discover how interactions between migrating FBMNs and the surrounding neuroepithelium in- fluence PCP protein localization and protrusive activity in the FBMNs. Finally, we propose to enrich our understanding of PCP-dependent neuron migration through the cloning of FBMN migration mutants we have identified in a forward genetic screen (Aim 3).
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财政年份:2012
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Identification of genes that regulate electrical synapse formation in vivo
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资助金额:$25.48万
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财政年份:2012
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依托单位:
TILLING the Zebrafish Genome: A Reverse Genetic Approach
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TILLING the Zebrafish Genome: A Reverse Genetic Approach
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依托单位:
TILLING the Zebrafish Genome: A Reverse Genetic Approach
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依托单位:
INTERACTION OF HUMAN PROFILIN W/PHOSPHATYDILINOSITOL IN GUVS
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批准号:7724052
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项目类别:
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资助金额:$2.36万
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依托单位:
Genetic Mechanisms of Hindbrain Segmentation
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资助金额:$29.81万
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财政年份:2005
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负责人:Cecilia B Moens
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依托单位:
Genetic Mechanisms of Hindbrain Segmentation
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批准号:7638474
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项目类别:
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资助金额:$29.2万
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财政年份:2005
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负责人:Cecilia B Moens
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依托单位:
Genetic Mechanisms of Hindbrain Segmentation
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批准号:7064923
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项目类别:
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资助金额:$30.71万
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财政年份:2005
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依托单位:
海外基金