Statistical Methods for RNA-seq Data Analysis
Statistical Methods for RNA-seq Data Analysis
批准号:
9171621
负责人:
Wei Sun
金额:
$25.44万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-15 至 2018-04-30
关键词:
AccountingAllelesAllelic ImbalanceArchitectureBiological MarkersBreast Cancer PatientCell LineCellsCellular biologyChromosomesComputer softwareDNADataData AnalysesDevelopmentDiagnosisDiploidyGene ChipsGene ExpressionGene Expression ProfileGene Expression RegulationGenesGeneticGenetic PolymorphismGenetic studyGenomeGenomic ImprintingHarvestHealthHumanHuman Cell LineHuman GenomeInbreedingIndividualJointsKnowledgeLifeMalignant NeoplasmsMapsMeasurementMeasuresMedicalMessenger RNAMethodsModificationMolecular ProfilingMusNormal tissue morphologyOrganismParentsPathway interactionsPatientsPatternPhasePopulationProteinsQuantitative Trait LociRecombinantsResearchResearch PersonnelResearch Project GrantsResourcesSamplingStagingStatistical MethodsStromal CellsTissuesTranslatingTumor TissueUncertaintyVariantX Inactivationbasecancer diagnosisclinical caredisorder preventiondrug sensitivitygenome-widehuman diseaseimprintimprovedinsightlymphoblastoid cell lineneoplastic cellpersonalized medicinetooltranscriptome sequencingtumoruser friendly software
中文摘要
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英文摘要
DESCRIPTION (provided by applicant):
Gene expression data produced from expression microarrays have not only greatly improved our understanding of cell biology, but also provided invaluable resources to guide the diagnosis and treatment of human diseases. However, the pace of incorporating gene expression signatures into medical practice has been relatively slow. This is mainly due to the limitations of
gene expression microarrays and the natural variation of gene expression across tissues or developmental stages. This research project aims to overcome these limitations by joint study of germline DNA polymorphisms and allele-specific expression (ASE) obtained from RNA-seq data. Since germline DNA polymorphisms are stable across tissues and developmental stages, inclusion of DNA information will help us establish more reliable biomarkers for patients' clinical
care. More specifically, we will study the genetic basis of ASE in both normal and tumor tissues, dissect genetic and parent-of-origin effects on ASE in human cell lines, and identify genes that escape X inactivation in both mouse reciprocal cross and human cell lines.
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