Constructing gene regulatory networks for asymmetric brain development
Constructing gene regulatory networks for asymmetric brain development
批准号:
8476931
负责人:
Shu-Yu Wu
金额:
$5.57万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-05-01 至 2014-04-30
关键词:
AffectApoptosisAutistic DisorderBase of the BrainBiological AssayBiological ModelsBrainCandidate Disease GeneCell DeathCell ProliferationCellsCerebral DominanceCodeColorComplexDevelopmentDorsalDyslexiaEmbryonic DevelopmentFluorescent in Situ HybridizationGene Expression RegulationGenesGeneticGenetic EpistasisGenetic ScreeningGenetic TranscriptionGenomicsHabenulaHabenular NucleusHumanIn Situ HybridizationInduced MutationKnowledgeLaboratoriesLeadLeftLightMapsMediatingModelingMolecularMolecular ProfilingMutateMutationNeuraxisNeurologicNeuronsOrganPathway interactionsPatternPhenotypePineal glandProcessRegulator GenesResolutionSchizophreniaScreening procedureShort Tandem RepeatSideStem cellsSystemTestingVertebratesWorkZebrafishcDNA Librarycell motilitycombinatorialdiencephalongene functionmigrationmutantnovelpositional cloningprogramsresearch studysimple sequence length polymorphismtranscription factor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Asymmetric development of the brain is a conserved feature of vertebrates, and is thought to increase processing capacity by avoiding duplication of function. The best understood model system for asymmetric brain development is the zebrafish. The zebrafish pineal complex includes the pineal organ and the left-sided parapineal organ, which innervates the left habenular nucleus. Our previous works has identified one transcription factor, tbx2b, that is required for parapineal cell specification and left-sided migration (Snelson et al., 2008), but expect that more transcription factors will likely be involved in this process. By identifying more genes and molecules that direct the formation of the parapineal organ, a comprehensive description of how parapineal cells segregate from pineal cells and independently differentiate will emerge. Here, I propose two complementary yet distinct approaches to delineate the gene regulatory circuitry that lead to the development of the asymmetric parapineal neurons. The first is to characterize and identify a novel parapineal-absent mutant, king tut, isolated from a recent genetic screen conducted in the Gamse laboratory. I will perform positional cloning with standard simple sequence length polymorphism (SSLP) genomic markers to identify the gene mutated in king tut. I will also further characterize the king tut phenotypes using cell fate mapping, lineage-specific markers, epistasis experiments, and cell death/proliferation assays to determine why king tut mutants lack a parapineal organ. Secondly, I will focus on constructing a gene regulatory network by identifying transcription factors required for parapineal and pineal development. These aims collectively will not only shed light on the genetic pathways that assign cells to a pineal versus a parapineal fate, but also advance our current understanding for the molecular mechanisms of neuronal diversification, asymmetrical cell migration and left-right asymmetry in the brain.)
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Constructing gene regulatory networks for asymmetric brain development
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批准号:8126963
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项目类别:
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资助金额:$5.3万
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财政年份:2011
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负责人:Shu-Yu Wu
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依托单位:
Constructing gene regulatory networks for asymmetric brain development
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批准号:8496844
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项目类别:
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资助金额:$5.77万
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财政年份:2011
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负责人:Shu-Yu Wu
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依托单位:
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