학술논문

Functional annotation of the 2q35 breast cancer risk locus implicates a structural variant in influencing activity of a long-range enhancer element
Document Type
article
Author
Baxter, Joseph SJohnson, NicholaTomczyk, KatarzynaGillespie, AndreaMaguire, SarahBrough, RachelFachal, LauraMichailidou, KyriakiBolla, Manjeet KWang, QinDennis, JoeAhearn, Thomas UAndrulis, Irene LAnton-Culver, HodaAntonenkova, Natalia NArndt, VolkerAronson, Kristan JAugustinsson, AnnelieBecher, HeikoBeckmann, Matthias WBehrens, SabineBenitez, JavierBermisheva, MarinaBogdanova, Natalia VBojesen, Stig EBrenner, HermannBrucker, Sara YCai, QiuyinCampa, DanieleCanzian, FedericoCastelao, Jose EChan, Tsun LChang-Claude, JennyChanock, Stephen JChenevix-Trench, GeorgiaChoi, Ji-YeobClarke, Christine LCollaborators, NBCSColonna, SarahConroy, Don MCouch, Fergus JCox, AngelaCross, Simon SCzene, KamilaDaly, Mary BDevilee, PeterDörk, ThiloDossus, LaureDwek, MiriamEccles, Diana MEkici, Arif BEliassen, A HeatherEngel, ChristophFasching, Peter AFigueroa, JonineFlyger, HenrikGago-Dominguez, ManuelaGao, ChiGarcía-Closas, MontserratGarcía-Sáenz, José AGhoussaini, MayaGiles, Graham GGoldberg, Mark SGonzález-Neira, AnnaGuénel, PascalGündert, MelanieHaeberle, LotharHahnen, EricHaiman, Christopher AHall, PerHamann, UteHartman, MikaelHatse, SigridHauke, JanHollestelle, AntoinetteHoppe, ReinerHopper, John LHou, Ming-FengInvestigators, kConFabInvestigators, ABCTBIto, HidemiIwasaki, MotokiJager, AgnesJakubowska, AnnaJanni, WolfgangJohn, Esther MJoseph, VijaiJung, AudreyKaaks, RudolfKang, DaeheeKeeman, RenskeKhusnutdinova, ElzaKim, Sung-WonKosma, Veli-MattiKraft, PeterKristensen, Vessela NKubelka-Sabit, KaterinaKurian, Allison WKwong, AvaLacey, James V
Source
American Journal of Human Genetics. 108(7)
Subject
Human Genome
Genetics
Cancer
Estrogen
Prevention
Breast Cancer
2.1 Biological and endogenous factors
Aetiology
Breast Neoplasms
CRISPR-Cas Systems
Cell Line
Chromosome Mapping
Chromosomes
Human
Pair 2
Female
Genetic Association Studies
Genetic Variation
Humans
Insulin-Like Growth Factor Binding Protein 5
Molecular Sequence Annotation
Promoter Regions
Genetic
Risk Factors
Sequence Deletion
NBCS Collaborators
kConFab Investigators
ABCTB Investigators
breast cancer risk
functional annotation
risk locus
Biological Sciences
Medical and Health Sciences
Genetics & Heredity
Language
Abstract
A combination of genetic and functional approaches has identified three independent breast cancer risk loci at 2q35. A recent fine-scale mapping analysis to refine these associations resulted in 1 (signal 1), 5 (signal 2), and 42 (signal 3) credible causal variants at these loci. We used publicly available in silico DNase I and ChIP-seq data with in vitro reporter gene and CRISPR assays to annotate signals 2 and 3. We identified putative regulatory elements that enhanced cell-type-specific transcription from the IGFBP5 promoter at both signals (30- to 40-fold increased expression by the putative regulatory element at signal 2, 2- to 3-fold by the putative regulatory element at signal 3). We further identified one of the five credible causal variants at signal 2, a 1.4 kb deletion (esv3594306), as the likely causal variant; the deletion allele of this variant was associated with an average additional increase in IGFBP5 expression of 1.3-fold (MCF-7) and 2.2-fold (T-47D). We propose a model in which the deletion allele of esv3594306 juxtaposes two transcription factor binding regions (annotated by estrogen receptor alpha ChIP-seq peaks) to generate a single extended regulatory element. This regulatory element increases cell-type-specific expression of the tumor suppressor gene IGFBP5 and, thereby, reduces risk of estrogen receptor-positive breast cancer (odds ratio = 0.77, 95% CI 0.74-0.81, p = 3.1 × 10-31).