Mechanisms guiding axon selection for myelination in vivo
Mechanisms guiding axon selection for myelination in vivo
批准号:
9055165
负责人:
Bruce H Appel
金额:
$34.02万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-09-15 至 2020-05-31
关键词:
3&apos Untranslated RegionsAction PotentialsAxonBindingBiological ModelsBrainBrain InjuriesCognitionCommunicationComplexDataDiseaseEconomicsExperimental ModelsFoundationsFunctional disorderGeneticGenetic TranslationGoalsGrowthHealthHumanImageIndividualInjuryKnowledgeLaboratoriesLearningLifeLipidsMediatingMembraneMemoryMental disordersMessenger RNAModelingMolecularMotorMyelinMyelin Basic ProteinsMyelin ProteinsMyelin SheathNeuraxisNeurogliaNeuronal PlasticityNeuronsOligodendrogliaPatternPreventionProcessProductionPropertyProtein BiosynthesisProteolipidsResearchRoleSchizophreniaSignal PathwaySignal TransductionSpeedSynapsesTestingTherapeuticTimeTranscriptTranslatingVesicleZebrafishautism spectrum disorderbasecellular imagingdesigndevelopmental neurobiologyexperiencein vivoinsightmyelinationnervous system disorderneurotransmissionoligodendrocyte myelinationoptogeneticsprotein transportpublic health relevanceresponsesocialtransmission process
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The long term goal of this project is to understand how oligodendrocytes, which are glial cells of the central nervous system, ensheath specific axons with specialized, proteolipid-rich myelin membrane. To myelinate axons, oligodendrocytes extend numerous membrane processes than spirally wrap axons. However, not all axons are myelinated. Based on observations that brain activity can modify myelin, we hypothesize that activity-dependent signals from axons influence which axons are selected for myelination. Using zebrafish as a model system, this project combines in vivo live cell imaging with genetic and pharmacological manipulations to investigate mechanisms that guide formation of myelin on specific axons in response to neuronal activity. Specific Aim 1 will test the hypothesis that neuronal activity provides axons with a competitive advantage for myelination through direct observation of ensheathment and myelination of identifiable axons that have different electrical activities in vivo. Specific Aim 2 will use genetic and pharmacological approaches and live imaging to test the hypothesis that neuronal activity promotes myelin sheath growth on select axons by activating the PI3K-Akt-mTor signaling pathway. Specific Aim 3 will test a hypothesis that activity-mediated signaling promotes the stability and translation of
mRNAs that encode myelin proteins and identify new activity- regulated transcripts. Completion of these aims will substantially extend our understanding of the cellular mechanisms by which oligodendrocytes choose axons for myelination and key molecules that promote activity- regulated myelin membrane growth. The results of this project have the potential for important new insights to learning, memory and psychiatric disease and to provide a foundation for designing therapeutic strategies to promote myelination of brains damaged by disease or injury.
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会议论文
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Mechanisms of Developmental Myelination
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资助金额:$91.86万
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Predoctoral Training in the Genetics of Development, Disease and Regeneration
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Mechanisms of Neuron-Glia Synaptic Communication
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Genetic Screen for Zebrafish Neural Defect Mutants
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Genetic Analysis of Peripheral Nerve Development
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Genetic Analysis of Peripheral Nerve Development
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依托单位:
Genetic Screen for Zebrafish Neural Defect Mutants
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资助金额:$31.65万
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Genetic Analysis of Peripheral Nerve Development
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资助金额:$32.91万
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Genetic Screen for Zebrafish Neural Defect Mutants
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Genetic Screen for Zebrafish Neural Defect Mutants
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Genetic Analysis of Peripheral Nerve Development
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A Screen For Drugs:Promote Oligodendrocyte Formatio(RMI)
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依托单位:
海外基金