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Gene regulation for stem cell differentiation

Gene regulation for stem cell differentiation
干细胞分化的基因调控
批准号:
10630103
负责人:
Jamy C. Peng
金额:
$37.7万
依托单位国家:
美国
项目类别:
财政年份:
2019
资助国家:
美国
项目状态:
未结题
起止时间:
2019-09-01 至 2025-05-31
关键词:
AcetylationAddressAdultAffectBindingBiochemicalBiological AssayBrainCRISPR/Cas technologyCell CycleChildhoodChildhood MedulloblastomasChromatinChromatin Remodeling FactorChromatin StructureDNA DamageDefectDevelopmentDevelopmental GeneDiseaseEP300 geneEmbryoEpigenetic ProcessEtiologyFunctional disorderGene ActivationGene ExpressionGene Expression RegulationGene TargetingGenesGenetic TranscriptionGenomicsGoalsGrowthHeartHematopoietic NeoplasmsHistonesHoloprosencephalyHomeoboxHumanKabuki Make-Up SyndromeKnock-outKnowledgeLicensingLinkLive BirthLysineMalignant NeoplasmsMalignant neoplasm of brainMalignant neoplasm of esophagusMalignant neoplasm of urinary bladderMediatingMethodologyMethylationMethyltransferaseMissionModelingModificationMolecularMutationNatureNeuronal DifferentiationOrganoidsPhenocopyPhenotypePhosphorylationPhosphotransferasesPlayPoint MutationPositioning AttributeProcessProsencephalonProteinsProteomicsPublishingRNA Polymerase IIReagentRegulator GenesRenal carcinomaResearchRoleScaffolding ProteinSignal PathwaySignal TransductionSiteSpecific qualifier valueStructureSyndromeTestingTranscriptional ActivationTranscriptional RegulationUnited States National Institutes of Healthataxia telangiectasia mutated proteinboneburden of illnesscausal variantcofactordisabilityepigenetic regulationgenome-widegenomic locushuman pluripotent stem cellhuman stem cellsinnovationinsightinterdisciplinary approachinterestloss of function mutationmalignant breast neoplasmmutantnerve stem cellneuralneurodevelopmentoverexpressionp300/CBP-Associated Factorp53-binding protein 1recruitresponsestem cell differentiationstem cell functionstem cellstechnological innovationtranscription factorupstream kinase

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ABSTRACT UTX is a chromatin modifier required for the development of brain, heart, and bone. To facilitate gene activation, UTX removes methylation from methylated lysine 27 in histone H3 (H3K27 methylation) and promotes H3K27 acetylation, H3K4 methylation, and open chromatin structure. In humans, UTX mutations are causally linked to a developmental syndrome and to many childhood and adult cancers of the brain, blood, bladder, esophagus, kidney, and breast. Although the importance of UTX is established, how it targets and regulates genes remains unclear. In particular, contradictory findings raise the question about which chromatin modifying activity of UTX is important for developmental gene regulation in stem cells. This knowledge gap limits our understanding of the etiology of developmental defects and cancers associated with UTX dysfunction or H3K27 modifications. Our long-term goal is to fill this knowledge gap by determining how UTX regulates chromatin structure and gene expression to govern stem cell functions. Our preliminary studies identified a protein network of UTX that is important for the differentiation of human pluripotent stem cells to the neural lineage. In this network, DNA damage response factors play a noncanonical role in regulating gene expression. Our central hypothesis is that this UTX-centric network facilitates chromatin changes and transcriptional activation during stem cell differentiation. To test this hypothesis, we plan to identify the chromatin-regulatory activity of UTX that affects transcription, examine the noncanonical function of DNA damage response factors in this network, and elucidate the role of a downstream effector that executes gene expression programming. Our approaches will take advantage of the conceptual innovation about a new UTX-driven protein network and the technological innovation of combining Cas9-CRISPR for structure–function studies, genomics assays, and the human cortical organoid model. If successful, we expect our findings to have wide implications on epigenetic regulation of human stem cells in development and cancer.
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Gene regulation for stem cell differentiation
Gene regulation for stem cell differentiation
Gene regulation for stem cell differentiation
Gene regulation for stem cell differentiation
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