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Accès ouvert déclaré2023article

Identification of constrained sequence elements across 239 primate genomes

121Citations signalées
78Institutions associées
18Pays d’affiliation

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Abstract Noncoding DNA is central to our understanding of human gene regulation and complex diseases 1,2 , and measuring the evolutionary sequence constraint can establish the functional relevance of putative regulatory elements in the human genome 3–9 . Identifying the genomic elements that have become constrained specifically in primates has been hampered by the faster evolution of noncoding DNA compared to protein-coding DNA 10 , the relatively short timescales separating primate species 11 , and the previously limited availability of whole-genome sequences 12 . Here we construct a whole-genome alignment of 239 species, representing nearly half of all extant species in the primate order. Using this resource, we identified human regulatory elements that are under selective constraint across primates and other mammals at a 5% false discovery rate. We detected 111,318 DNase I hypersensitivity sites and 267,410 transcription factor binding sites that are constrained specifically in primates but not across other placental mammals and validate their cis -regulatory effects on gene expression. These regulatory elements are enriched for human genetic variants that affect gene expression and complex traits and diseases. Our results highlight the important role of recent evolution in regulatory sequence elements differentiating primates, including humans, from other placental mammals.

Institutions

Illumina (United States)University of California, Santa CruzUppsala UniversityScience for Life LaboratoryUniversity of SalfordUniversity of ViennaUniversité de MontréalAarhus UniversityCentre for Cellular and Molecular BiologyAcademy of Scientific and Innovative ResearchUniversitat Pompeu FabraInstitut de Biologia EvolutivaUniversité Libre de BruxellesInstituto de Desenvolvimento Sustentável MamirauáCentro Nacional de Análisis GenómicoBaylor College of MedicineBaylor GeneticsTanzania National ParksUniversity of North Carolina at Chapel HillNorth Carolina Central UniversityNorth Carolina Museum of Natural SciencesNorth Carolina State UniversityDuke UniversityRenaissance Computing InstituteCopenhagen ZooUniversidade Federal de ViçosaUniversidade Federal do AmazonasUniversity of UtahUniversidade Federal do ParáInstituto Nacional de Pesquisas da AmazôniaInstituto de Investigaciones de la Amazonía PeruanaUniversidade Federal de RondôniaUniversidade Federal de Mato GrossoTrinity UniversityUniversité de MahajangaNew York UniversityWashington University in St. LouisThe University of Texas MD Anderson Cancer CenterYale UniversityArizona State UniversityUniversity of California, DavisThe Carter CenterKunming Institute of ZoologyChinese Academy of SciencesZhejiang UniversityZhejiang Chinese Medical UniversityUniversity of CopenhagenWomen's Hospital, School of Medicine, Zhejiang UniversityTanzania Wildlife Research InstituteFriedrich-Loeffler-InstitutJustus-Liebig-Universität GießenVietnam National University, HanoiVNU Central Institute for Natural Resources and Environmental StudiesUniversitat Autònoma de BarcelonaInstitut Català de Paleontologia Miquel CrusafontStaatliches Museum für Naturkunde StuttgartInstitució Catalana de Recerca i Estudis AvançatsPasqual Maragall FoundationBarcelonaβeta Brain Research CenterCentre for Genomic RegulationHọc viện Tư phápAgency for Science, Technology and ResearchGenome Institute of SingaporeSingHealthDuke-NUS Medical SchoolSingHealth Duke-NUS Academic Medical CentreNational Museums ScotlandUniversity of EdinburghGerman Primate CenterLeibniz ScienceCampus Primate CognitionUniversity of GöttingenUniversity of CalgaryAlberta Children's HospitalCardiovascular Institute of the SouthStanford UniversityVA Palo Alto Health Care SystemCold Spring Harbor LaboratoryBroad Institute

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