Earmuff maintains restricted potentials of mature secondary neuroblasts
Earmuff maintains restricted potentials of mature secondary neuroblasts
批准号:
8067178
负责人:
Cheng-Yu Lee
金额:
$29.49万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-05-01 至 2015-04-30
关键词:
BackBiological ModelsBrainCell CycleCell LineageCell PolarityCell divisionCellsDataDaughterDevelopmentDrosophila genusEarmuffEctopic ExpressionGangliaGene TargetingGenetic ModelsGenetic TranscriptionHomeostasisHomologous GeneLeadMaintenanceMalignant NeoplasmsMediatingMolecularMothersMusMutateNatural regenerationNeuronsNuclearPhenotypePhysiologicalPropertyRepressor ProteinsRiskSignal TransductionStem cellsTestingTissuesTranscription Repressor/Corepressoradult stem cellcell fate specificationcell typeflyin vivoin vivo Modelinsightmutantneuroblastnotch proteinnovelpreventprogenitorpublic health relevanceself-renewaltissue regenerationtranscription factortumorigenesis
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The mechanisms that restrict proliferation and suppress de-differentiation of transit amplifying cells in adult stem cell lineages are unknown. Mature secondary neuroblasts in Drosophila larval brains resemble vertebrate transit amplifying cells, and undergo limited rounds of asymmetric divisions to regenerate and to produce terminally differentiated neurons. We identified a novel transcription factor Earmuff (Erm), which restricts proliferation and suppresses de-differentiation of mature secondary neuroblasts. In erm mutant brains, mature secondary neuroblasts de-differentiate back into their parental neuroblast fates resulting in a dramatic increase in type II neuroblasts. The physiological and functional properties of the de-differentiated neuroblasts are indistinguishable from the endogenous type II neuroblasts. The de-differentiation phenotype in erm mutant brains can be rescued by targeted expression of Erm or its mouse homologs in mature secondary neuroblasts. Intriguingly, de-differentiation of mature secondary neuroblasts in erm mutant brains occurs independently of cortical cell polarity. Our data suggest that Erm restricts proliferation by promoting Prospero-mediate cell cycle exit, but suppresses de-differentiation by negatively regulating Notch signaling. Our proposal outlined below will provide insight into the molecular mechanisms by which Erm restricts proliferation and suppresses de-differentiation of mature secondary neuroblasts.
PUBLIC HEALTH RELEVANCE: Many types of stem cells generate transit amplifying cells to transiently expand the pool of un- differentiated progenitors during normal development, maintenance of homeostasis and tissue regeneration. Restriction of proliferation and suppression of de-differentiation in transit amplifying cells are keys to generate necessary differentiated progeny while preventing aberrant cell fate specification that might lead to tumorigenesis. Thus, how proliferation and de-differentiation are regulated in transit amplifying cells is a fundamental question that concerns virtually all adult stem cell types. In this proposal, we will use mature secondary neuroblasts in developing fly larval brains as an in vivo model system to study how proliferation and de-differentiation are regulated in transit amplifying cells.
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依托单位:
海外基金