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A promoter-level mammalian expression atlas

2208Citations signalées — pas une note de qualité
106Institutions déclarées
20Pays d’affiliation déclarés

Résumé fourni par la source

Regulated transcription controls the diversity, developmental pathways and spatial organization of the hundreds of cell types that make up a mammal. Using single-molecule cDNA sequencing, we mapped transcription start sites (TSSs) and their usage in human and mouse primary cells, cell lines and tissues to produce a comprehensive overview of mammalian gene expression across the human body. We find that few genes are truly ‘housekeeping’, whereas many mammalian promoters are composite entities composed of several closely separated TSSs, with independent cell-type-specific expression profiles. TSSs specific to different cell types evolve at different rates, whereas promoters of broadly expressed genes are the most conserved. Promoter-based expression analysis reveals key transcription factors defining cell states and links them to binding-site motifs. The functions of identified novel transcripts can be predicted by coexpression and sample ontology enrichment analyses. The functional annotation of the mammalian genome 5 (FANTOM5) project provides comprehensive expression profiles and functional annotation of mammalian cell-type-specific transcriptomes with wide applications in biomedical research. A study from the FANTOM consortium using single-molecule cDNA sequencing of transcription start sites and their usage in human and mouse primary cells, cell lines and tissues reveals insights into the specificity and diversity of transcription patterns across different mammalian cell types. FANTOM5 (standing for functional annotation of the mammalian genome 5) is the fifth major stage of a major international collaboration that aims to dissect the transcriptional regulatory networks that define every human cell type. Two Articles in this issue of Nature present some of the project's latest results. The first paper uses the FANTOM5 panel of tissue and primary cell samples to define an atlas of active, in vivo bidirectionally transcribed enhancers across the human body. These authors show that bidirectional capped RNAs are a signature feature of active enhancers and identify more than 40,000 enhancer candidates from over 800 human cell and tissue samples. The enhancer atlas is used to compare regulatory programs between different cell types and identify disease-associated regulatory SNPs, and will be a resource for studies on cell-type-specific enhancers. In the second paper, single-molecule sequencing is used to map human and mouse transcription start sites and their usage in a panel of distinct human and mouse primary cells, cell lines and tissues to produce the most comprehensive mammalian gene expression atlas to date. The data provide a plethora of insights into open reading frames and promoters across different cell types in addition to valuable annotation of mammalian cell-type-specific transcriptomes.

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Contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
A promoter-level mammalian expression atlas
Date Crossref
01/03/2014
Éditeur
Springer Science and Business Media LLC
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude et ne compte pas comme une seconde source scientifique indépendante.

Institutions déclarées

CE Technologies (United Kingdom)RIKEN Center for Integrative Medical SciencesRIKEN Advanced Science InstituteUniversity of RegensburgUniversity of EdinburghUniversity of BergenImperial College LondonEngelhardt Institute of Molecular BiologyRussian Academy of SciencesKarolinska InstitutetUniversity of CopenhagenLawrence Berkeley National LaboratoryWellcome TrustMassey UniversityKing Abdullah University of Science and TechnologyHarvard University PressAustrian Academy of SciencesUniversidade do PortoVrije Universiteit AmsterdamCharité - Universitätsmedizin BerlinUniversity of BaselThe University of QueenslandUniversity of DelawareUniversity of Cape TownInternational Centre for Genetic Engineering and BiotechnologyColumbia UniversityTechnische Universität DresdenYeshiva UniversityRoyal Netherlands Academy of Arts and SciencesUtrecht UniversityETH ZurichUniversity at Buffalo, State University of New YorkNorwegian University of Science and TechnologyUniversity Hospital RegensburgUniversity of BristolRice UniversityRoslin InstituteJohns Hopkins UniversityNational Institute of Advanced Industrial Science and TechnologyTohoku UniversityKeio UniversityHammersmith HospitalAmsterdam University of the ArtsUniversity of AmsterdamLeiden UniversityVavilov Institute of General GeneticsMoscow Institute of Physics and TechnologyUniversity of British ColumbiaJohns Hopkins MedicineGenetikaScuola Internazionale Superiore di Studi AvanzatiThe University of OsakaThe Wistar InstituteEuropean Bioinformatics InstituteHarvard UniversityWayne State UniversityCancer Research And BiostatisticsThe University of TokyoInstitute of Genetics and CancerAmsterdam UMC Location Vrije Universiteit AmsterdamFondazione Bruno KesslerKarolinska University HospitalUNSW SydneyThe University of Western AustraliaUniversity of NottinghamKyungpook National UniversityJackson LaboratoryFondazione Santa LuciaGriffith UniversityInternational Centre for Genetic Engineering and BiotechnologyWellcome Centre for Infectious Diseases Research in AfricaColumbia University Irving Medical CenterCancer Genetics (United States)Saitama Medical UniversityAlbert Einstein College of MedicineConsorzio Interuniversitario per le BiotecnologieUniversity of UdineUniversity Medical Center UtrechtHubrecht Institute for Developmental Biology and Stem Cell ResearchCold Spring Harbor LaboratoryNational Center for Global Health and MedicineTokyo Medical and Dental UniversityMassachusetts Eye and Ear InfirmaryScience for Life LaboratoryOhu UniversityKeio University HospitalJapan Science and Technology AgencyRIKEN Center for Computational ScienceBoston Children's HospitalUniversity of HelsinkiMater ResearchAmsterdam UMC Location University of AmsterdamKing's College LondonLeiden University Medical CenterChild and Family Research InstituteKyushu UniversityNagoya UniversityInstitute for Advanced Medical ResearchNihon UniversityHarry Perkins Institute of Medical ResearchNottingham City HospitalRIKEN BioResource Research CenterTokyo University of Pharmacy and Life SciencesHelsinki Institute for Information TechnologyKyushu University HospitalSurugadai Nihon University Hospital

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