학술논문

Fine-mapping of 150 breast cancer risk regions identifies 191 likely target genes.
Document Type
article
Author
Fachal, LauraAschard, HuguesBeesley, JonathanBarnes, Daniel RAllen, JamieKar, SiddharthaPooley, Karen ADennis, JoeMichailidou, KyriakiTurman, ConstanceSoucy, PennyLemaçon, AudreyLush, MichaelTyrer, Jonathan PGhoussaini, MayaMoradi Marjaneh, MahdiJiang, XiaAgata, SimonaAittomäki, KristiinaAlonso, M RosarioAndrulis, Irene LAnton-Culver, HodaAntonenkova, Natalia NArason, AdalgeirArndt, VolkerAronson, Kristan JArun, Banu KAuber, BerndAuer, Paul LAzzollini, JacopoBalmaña, JudithBarkardottir, Rosa BBarrowdale, DanielBeeghly-Fadiel, AliciaBenitez, JavierBermisheva, MarinaBiałkowska, KatarzynaBlanco, Amie MBlomqvist, CarlBlot, WilliamBogdanova, Natalia VBojesen, Stig EBolla, Manjeet KBonanni, BernardoBorg, AkeBosse, KristinBrauch, HiltrudBrenner, HermannBriceno, IgnacioBrock, Ian WBrooks-Wilson, AngelaBrüning, ThomasBurwinkel, BarbaraBuys, Saundra SCai, QiuyinCaldés, TrinidadCaligo, Maria ACamp, Nicola JCampbell, IanCanzian, FedericoCarroll, Jason SCarter, Brian DCastelao, Jose EChiquette, JocelyneChristiansen, HansChung, Wendy KClaes, Kathleen BMClarke, Christine LGEMO Study CollaboratorsEMBRACE CollaboratorsCollée, J MargrietCornelissen, StenCouch, Fergus JCox, AngelaCross, Simon SCybulski, CezaryCzene, KamilaDaly, Mary Bde la Hoya, MiguelDevilee, PeterDiez, OrlandDing, Yuan ChunDite, Gillian SDomchek, Susan MDörk, ThiloDos-Santos-Silva, IsabelDroit, ArnaudDubois, StéphaneDumont, MartineDuran, MercedesDurcan, LorraineDwek, MiriamEccles, Diana MEngel, ChristophEriksson, MikaelEvans, D GarethFasching, Peter AFletcher, OliviaFloris, GiuseppeFlyger, Henrik
Source
Nature genetics. 52(1)
Subject
GEMO Study Collaborators
EMBRACE Collaborators
KConFab Investigators
HEBON Investigators
ABCTB Investigators
Humans
Breast Neoplasms
Genetic Predisposition to Disease
Bayes Theorem
Risk Factors
Chromosome Mapping
Regulatory Sequences
Nucleic Acid
Linkage Disequilibrium
Polymorphism
Single Nucleotide
Quantitative Trait Loci
Female
Genome-Wide Association Study
Biomarkers
Tumor
Genetic Testing
Prevention
Genetics
Cancer
Breast Cancer
Human Genome
Biotechnology
2.1 Biological and endogenous factors
Developmental Biology
Biological Sciences
Medical and Health Sciences
Language
Abstract
Genome-wide association studies have identified breast cancer risk variants in over 150 genomic regions, but the mechanisms underlying risk remain largely unknown. These regions were explored by combining association analysis with in silico genomic feature annotations. We defined 205 independent risk-associated signals with the set of credible causal variants in each one. In parallel, we used a Bayesian approach (PAINTOR) that combines genetic association, linkage disequilibrium and enriched genomic features to determine variants with high posterior probabilities of being causal. Potentially causal variants were significantly over-represented in active gene regulatory regions and transcription factor binding sites. We applied our INQUSIT pipeline for prioritizing genes as targets of those potentially causal variants, using gene expression (expression quantitative trait loci), chromatin interaction and functional annotations. Known cancer drivers, transcription factors and genes in the developmental, apoptosis, immune system and DNA integrity checkpoint gene ontology pathways were over-represented among the highest-confidence target genes.