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Accès ouvert déclaré 2022 preprint

Balanced chromosomal rearrangements offer insights into coding and noncoding genomic features associated with developmental disorders

11Citations signalées — pas une note de qualité
118Institutions déclarées
38Pays d’affiliation déclarés

Résumé fourni par la source

ABSTRACT Balanced chromosomal rearrangements (BCRs), including inversions, translocations, and insertions, reorganize large sections of the genome and contribute substantial risk for developmental disorders (DDs). However, the rarity and lack of systematic screening for BCRs in the population has precluded unbiased analyses of the genomic features and mechanisms associated with risk for DDs versus normal developmental outcomes. Here, we sequenced and analyzed 1,420 BCR breakpoints across 710 individuals, including 406 DD cases and the first large-scale collection of 304 control BCR carriers. We found that BCRs were not more likely to disrupt genes in DD cases than controls, but were seven-fold more likely to disrupt genes associated with dominant DDs (21.3% of cases vs. 3.4% of controls; P = 1.60×10 −12 ). Moreover, BCRs that did not disrupt a known DD gene were significantly enriched for breakpoints that altered topologically associated domains (TADs) containing dominant DD genes in cases compared to controls (odds ratio [OR] = 1.43, P = 0.036). We discovered six TADs enriched for noncoding BCRs (false discovery rate < 0.1) that contained known DD genes ( MEF2C, FOXG1, SOX9, BCL11A, BCL11B , and SATB2 ) and represent candidate pathogenic long-range positional effect (LRPE) loci. These six TADs were collectively disrupted in 7.4% of the DD cohort. Phased Hi-C analyses of five cases with noncoding BCR breakpoints localized to one of these putative LRPEs, the 5q14.3 TAD encompassing MEF2C , confirmed extensive disruption to local 3D chromatin structures and reduced frequency of contact between the MEF2C promoter and annotated enhancers. We further identified six genomic features enriched in TADs preferentially disrupted by noncoding BCRs in DD cases versus controls and used these features to build a model to predict TADs at risk for LRPEs across the genome. These results emphasize the potential impact of noncoding structural variants to cause LRPEs in unsolved DD cases, as well as the complex interaction of features associated with predicting three-dimensional chromatin structures intolerant to disruption.

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Contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Balanced chromosomal rearrangements offer insights into coding and noncoding genomic features associated with developmental disorders
Date Crossref
16/02/2022
Éditeur
openRxiv
Type
posted-content

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

Broad InstituteHarvard UniversityMassachusetts General HospitalUniversity of CopenhagenBaylor College of MedicineCenter for Theoretical Biological PhysicsRice UniversityChinese University of Hong KongCopenhagen University HospitalRigshospitaletMental Health ServicesUniversity of HelsinkiFinnish Institute for Health and WelfareInstitute for Molecular Medicine FinlandMaastricht UniversityUniversidade de São PauloUniversidade de BrasíliaSarah Network of Rehabilitation HospitalsKU LeuvenCyprus Institute of Neurology and GeneticsUniversity of ZurichLyon 1 UniversitéHospices Civils de LyonInstitut NeuroMyoGèneMax Planck Institute for Molecular GeneticsGenetikumHamad bin Khalifa UniversityTartu University HospitalUniversity of TartuCenter of Medical Genetics and Primary Health CareIRCCS Eugenio MedeaKarolinska University HospitalKarolinska InstitutetSahlgrenska University HospitalScience for Life LaboratoryFundação Oswaldo CruzUniversity of British ColumbiaCanakkale Onsekiz Mart Universitesi Tip Fakultesi HastanesiCentre For Human GeneticsBambino Gesù Children's HospitalOslo University HospitalUniversity of OsloUniversity of MariborUniversity Clinical Centre MariborMünchen KlinikUniversidade Estadual Paulista (Unesp)Medical University of VarnaUniversity Hospital St. MarinaMedical University of GrazConsejo Nacional de Investigaciones Científicas y TécnicasHospital General de Niños Ricardo GutierrezUniversidade Estadual de Campinas (UNICAMP)Hangzhou Women’s HospitalZhejiang UniversityCharles UniversityAarhus UniversityAarhus University HospitalUniversity of Southern DenmarkFiladelfiaKennedy CenterOdense University HospitalVejle SygehusCentre Hospitalier Universitaire de Clermont-FerrandCentre Hospitalier Universitaire de RennesGeneral University Hospital of PatrasUniversity of PecsCentre for DNA Fingerprinting and DiagnosticsAll India Institute of Medical SciencesAzienda Ospedaliera G.RummoUniversity of PaviaHaukeland University HospitalNational Institute for Biotechnology and Genetic EngineeringMedical University of BiałystokUniversity of CoimbraHM HospitalesUniversitat Autònoma de BarcelonaCorporació Sanitària Parc TaulíInstitute of Research and Innovation Parc TauliSkåne University HospitalLeiden University Medical CenterLegacy HealthUniversity Medical CenterSaint Louis UniversityKaiser PermanenteCentre Hospitalier Métropole SavoieAuckland City HospitalUniversity of AucklandColumbia University Irving Medical CenterBrigham and Women's HospitalAkdeniz UniversityCentro de Epilepsia y Neurocirugía FuncionalMassachusetts College of Pharmacy and Health SciencesBursa Uludağ Üni̇versi̇tesi̇Istanbul Aydın UniversityUniversity Hospital of WalesHospital de EspecialidadesUniversity of ManchesterManchester University NHS Foundation TrustSt Mary's HospitalGenomics (United Kingdom)Mass General BrighamPediatrics and GeneticsNew York UniversityColumbia UniversityInstituto de Biologia Molecular do ParanáTel Aviv UniversityRabin Medical CenterSchneider Children's Medical CenterMount Sinai HospitalUniversity of TorontoUMass Memorial Health CareUniversity of Massachusetts Chan Medical SchoolShriners Hospitals for Children - BostonBoston VA Research InstituteEducation NorthwestThe University of Western AustraliaShanghaiTech UniversityInternational Business School

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Sujets associés

Genomic variations and chromosomal abnormalitiesGenomics and Chromatin DynamicsChromosomal and Genetic Variations

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