Protein methylation pathways that control genetic susceptibility to environmental pollutants in the occurrence of craniofacial defects
Protein methylation pathways that control genetic susceptibility to environmental pollutants in the occurrence of craniofacial defects
批准号:
10651798
负责人:
Jian Xu
金额:
$42.33万
依托单位国家:
美国
项目类别:
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-07-01 至 2026-06-30
关键词:
3-DimensionalAblationAffectAnimal ModelAreaArginineAryl Hydrocarbon ReceptorBiochemicalBioinformaticsBlood VesselsCellular biologyChIP-seqCleft PalateComplexCongenital AbnormalityConnective TissueCraniofacial AbnormalitiesCuesCytoprotectionDNA BindingDefectDeformityDepositionDevelopmentDifferentiation and GrowthDioxinsElementsEnvironmental PollutantsEnvironmental Risk FactorEnzymesEpigenetic ProcessExhibitsFaceGene ExpressionGenesGeneticGenetic ModelsGenetic Predisposition to DiseaseGenetic TranscriptionGenomicsGrowthHeadIncidenceInvestigationLigandsMandibleMapsMediatingMethylationMolecularMorphogenesisMusMuscleNerve TissueNeural Crest CellNuclear ReceptorsPalatePathway interactionsPredispositionPrevention strategyPrimordiumProcessProtein MethylationProtein-Arginine N-MethyltransferasePublic HealthRepressionResearchRiskRoleStressStructureTetrachlorodibenzodioxinToxic Environmental SubstancesToxic effectTranscriptional ActivationXenobioticsbone losscell behaviorcofactorcraniofacialcraniofacial bonecraniofacial developmentcraniumgain of functiongene environment interactiongene inductionhigh risk populationhistone methylationimprovedliver injuryloss of functionmalformationmouse geneticsnon-histone proteinnovel strategiesnovel therapeuticsoxidative damagepalatal shelvespreventpupreceptorreceptor bindingresponsetranscriptometranscriptome sequencing
中文摘要
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英文摘要
PROJECT SUMMARY / ABSTRACT
Formation of the head and face is a complex process that is highly susceptible to disturbance as evidenced by
the high incidence of craniofacial birth defects. Dysregulation in genetic and environmental factors are the main
causes of craniofacial defects. However, less than 50% of craniofacial defect cases have identified genetic
causes, and mechanisms of gene-environment interaction remains poorly understood. Therefore, molecular
investigation is needed to increase understanding of craniofacial development. We recently identified a new
regulator of craniofacial morphogenesis that interacts with environmental stress. This regulator, Protein
Arginine Methyltransferase 1 (PRMT1), is an enzyme that methylates histone to generate a transcriptional
activation mark H4R3me2a and methylation non-histone proteins on arginine residues. Prmt1 ablation in
neural crest cells caused cleft palate and skull malformation. We further uncovered a role for PRMT1 in
guarding against environmental toxin TCDD-induced cleft palate. In this proposal, we aim to determine
PRMT1-dependent transcription and epigenetic mechanisms that regulated TCDD-induced cellular changes
and developmental defects, using mouse genetic models, biochemical and cell biology approaches, RNA-seq,
ChIP-seq and bioinformatic analysis.
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