Barrier Insulators in Erythropoiesis
Barrier Insulators in Erythropoiesis
批准号:
8389605
负责人:
PATRICK G GALLAGHER
金额:
$39.57万
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:
2011-01-01 至 2014-11-30
关键词:
AddressAnimal ModelArchitectureBerylliumBindingBinding ProteinsBiological AssayBiologyCancerousCell Culture TechniquesCellsCellular StructuresCharacteristicsChickensChildChromatinChromosomal translocationComplexCongenital AbnormalityDNA MethylationDataDevelopmentDiseaseElementsEnhancersEnzymesErythroblastsErythrocyte MembraneErythroidErythroid CellsErythropoiesisEuchromatinExhibitsFocus GroupsGene ClusterGene ExpressionGene Expression RegulationGene SilencingGenesGenomicsGoalsGrowth and Development functionHematopoieticHereditary DiseaseHeterochromatinHistocompatibility TestingHistonesHumanIndiumInheritedInsulator ElementsLeadMalignant NeoplasmsMammalian CellMass Spectrum AnalysisMediatingMembrane Protein GeneModelingMolecular ProfilingMultiprotein ComplexesNucleosomesPatternPositioning AttributePrincipal InvestigatorProcessProtein BindingProtein IsoformsProteinsProteomicsRecruitment ActivityRegulationReporter GenesSpecificityStable Isotope LabelingStagingStem cellsStructureTechniquesTechnologyTimeTissue DifferentiationTransgenic MiceWorkabstractingbasebeta Globincell growthcell typecellular developmentgenetic elementgenetic regulatory proteingenome-widehistone acetyltransferasehistone methyltransferasehistone modificationhuman datain vivoinsightnovelpreventprogramspromoterstemtranscription factor USFvalidation studies
中文摘要
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英文摘要
Program Director/Principal Investigator (Last, First, Middle): Gallagher, Patrick G.
Project Summary - Abstract
Barrier Insulators in Erythropoiesis
Barrier insulators create a "barrier" to protect against heterochromatin-mediated gene silencing, critical for
regulation of cell-type specific gene expression in normal development and differentiation. Perturbation of
barrier insulator function, which frequently occurs in chromosomal translocations associated with sporadic and
inherited genetic disease or cancerous states, contributes to alterations in gene expression characteristic of
these conditions. The structure and function of vertebrate barrier elements are poorly understood. The overall
aims of this project are to define and characterize barrier insulators controlling gene expression during
erythropoiesis. The goal of aim one is to identify a common regulatory signature associated with functional
barrier insulators in human erythroid cells. These studies address the hypothesis that there is a common
regulatory signature for cell-type specific barrier insulators recognizable by chromatin architecture, binding of
proteins with histone methyltransferase and acetyltransferase activity, ATP-dependent nucleosome remodeling
activity, and other regulatory functions. This aim combines state of the art high throughput genomic
technologies with functional studies. After barrier insulators have been identified and functionally validated,
histone architecture, regulatory protein binding, and genomic organization will be integrated and analyzed. The
goal of aim two is to address the hypothesis that USF (upstream stimulatory factor) proteins recruit enzymes
and other proteins associated with activating histone modifications to block the mechanism(s) that lead to
spreading of gene-silencing associated chromatin changes in barrier insulators. This hypothesis is based on
studies of the chicken HS4 barrier insulator from the beta globin gene cluster and preliminary data from human
erythroid cells. USF binding in hematopoietic stem and progenitor cells and erythroblasts will be assessed and
integrated with genomic organization, histone architecture, and regulatory protein binding. The goal of the third
aim is to characterize the multiprotein complexes associated with barrier insulators in erythroid cells,
addressing the hypothesis that these complexes contain proteins of common function, including histone
methyltransferases and acetyltransferases, nucleosomal remodeling proteins, and other critical regulatory
proteins. Comprehensive analyses of multiprotein complexes regulating programs of gene expression have
been hampered by low abundance, dynamic and context-dependent composition, and technologic difficulties in
identifying complex constituents. To overcome these hurdles, characterization of the multiprotein complexes
mediating barrier insulator function will be performed using state-of-the-art, quantitative proteomics techniques.
This approach combines protein labeling by stable isotopes in vivo, integrated mass spectrometry and
computational platforms, followed by validation studies. Together, these studies will provide novel insight into a
critical process controlling gene expression and will ultimately lead to a comprehensive understanding of the
regulatory interactions that control specific gene expression programs during cell growth and development.
PHS 398/2590 (Rev. 06/09) Page Continuation Format Page
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
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批准号:10192709
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批准号:10454355
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财政年份:2015
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依托单位:
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批准号:9987207
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项目类别:
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资助金额:$2.0万
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财政年份:2015
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负责人:PATRICK G GALLAGHER
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依托单位:
Yale Cooperative Center of Excellence in Hematology
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批准号:10249339
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资助金额:$81.39万
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财政年份:2015
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依托单位:
Yale Cooperative Hematology Specialized Core Center
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资助金额:$100.0万
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财政年份:2015
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依托单位:
Yale Cooperative Hematology Specialized Core Center
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资助金额:$80.71万
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财政年份:2015
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依托单位:
Yale Cooperative Hematology Specialized Core Center
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资助金额:$2.36万
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财政年份:2015
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依托单位:
Yale Cooperative Center of Excellence in Hematology
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资助金额:$100.19万
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财政年份:2015
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依托单位:
Yale Cooperative Hematology Specialized Core Center
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财政年份:2015
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资助金额:$78.2万
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财政年份:2015
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依托单位:
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资助金额:$18.73万
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财政年份:2014
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依托单位:
Regulation of Erythrocyte Volume Homeostasis
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财政年份:2014
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Regulation of Erythrocyte Volume Homeostasis
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依托单位:
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负责人:PATRICK G GALLAGHER
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依托单位:
海外基金