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Analysis of chromatin-RNA interactions during the cell cycle.

Organization BOSTON UNIVERSITY MEDICAL CAMPUSLocation BOSTON, UNITED STATESPosted 16 Mar 2022Deadline 31 Dec 2025 โš ๏ธ
NIHUS FederalResearch GrantFY2025ATPase DomainAbscissionAffectArchitectureBasal Transcription FactorBasal transcription factor genesBindingBinding ProteinsBiochemicalBiologicalCancersCell BodyCell CycleCell Division CycleCell LineCell NucleusCell divisionCellLineCellsChromatinChromatin LoopChromatin Loop DomainsChromatin StructureChromosomal OrganizationChromosomal StructureChromosome CondensationChromosome OrganizationChromosome SegregationChromosome StructuresChromosomesComplexDNADNA LoopDNA Polymerase IIDNA Polymerase epsilonDNA mutationDNA-Dependent DNA Polymerase IIDeoxyribonucleic AcidDevelopmentEngineering / ArchitectureEnzyme GeneEnzymesEpistasisEpistatic DeviationEuchromatinEventExcisionExtirpationFunctional RNAGene Action RegulationGene ExpressionGene Expression RegulationGene RegulationGene Regulation ProcessGene TranscriptionGeneral Transcription Factor GeneGeneral Transcription FactorsGeneticGenetic ChangeGenetic EpistasisGenetic TranscriptionGenetic defectGenetic mutationGenomeGenome StabilityGenomic StabilityGenomic approachGenomicsGoalsHeterochromatinHistonesHumanHuman DevelopmentImageIn VitroInteraction DeviationInterphaseInterphase ChromosomeKnowledgeLigand Binding ProteinLigand Binding Protein GeneLinkM PhaseMalignant CellMalignant NeoplasmsMalignant TumorMediatingMessenger RNAMiceMice MammalsMitosisMitosis StageMitoticMitotic ChromosomeModern ManMolecularMolecular InteractionMurineMusMutationNetwork AnalysisNeurodevelopmental DisorderNeurological Development DisorderNon-Polyadenylated RNANoncoding RNANontranslated RNANuclearNuclear ProteinNuclear StructureNucleic Acid BiochemistryNucleic AcidsNucleusPathway AnalysisPathway interactionsPhenotypePhosphorylationPhysical condensationPol IIPreparationProcessProphaseProtein BindingProtein PhosphorylationProteinsRNARNA BindingRNA ExpressionRNA Gene ProductsRNA SplicingRNA boundRegulationRemovalRibonucleic AcidSister ChromatidSplicingStrains Cell LinesStructureSurfaceSurgical RemovalTimeTranscriptionTranscription ActivationTranscription Factor Proto-OncogeneTranscription factor genesTranscriptional ActivationTranscriptional ControlTranscriptional RegulationUntranslated RNAWorkbiologicbound proteincancer cellchromatin remodelingchromosome divisioncohesincondensationcondensincultured cell linede novo mutationde novo variantdesigndesigningdevelopmentalepistatic interactionepistatic relationshipexperimentexperimental researchexperimental studyexperimentsgene x gene interactiongenetic analysisgenetic epistasesgenetic informationgenetically engineered cellsgenetically modified cellsgenome mutationgenomic effortgenomic strategyhuman errorimaginginsightmRNAmalignancyneoplasm/cancerneurodevelopmental diseasenon-histone proteinnoncodingnonhistone proteinpathwaypreparationsprogramsprotein oligomerreconstitutereconstitutionresectionsegregationtelophasetranscription factor

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Description preview

DNA is packaged by histone proteins into chromatin in order to fit into the nucleus of a cell. Globally, chromatin
can be separated into open, transcriptionally active and closed, transcriptionally silent compartments. Many

different nonhistone, chromatin-binding proteins contribute to global chromatin structure. Chromatin remodeling

enzymes,โ€ฆ

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Analysis of chromatin-RNA interactions during the cell cycle. โ€” BOSTON UNIVERSITY MEDICAL CAMPUS | UNITED STATES | Mar 2 | Dev Procure