학술논문

Fine-Scale Mapping of the 5q11.2 Breast Cancer Locus Reveals at Least Three Independent Risk Variants Regulating MAP3K1
Document Type
article
Author
Glubb, Dylan MMaranian, Mel JMichailidou, KyriakiPooley, Karen AMeyer, Kerstin BKar, SiddharthaCarlebur, SaskiaO’Reilly, MartinBetts, Joshua AHillman, Kristine MKaufmann, SusanneBeesley, JonathanCanisius, SanderHopper, John LSouthey, Melissa CTsimiklis, HelenApicella, CarmelSchmidt, Marjanka KBroeks, AnnegienHogervorst, Frans Bvan der Schoot, C EllenMuir, KennethLophatananon, ArtitayaStewart-Brown, SarahSiriwanarangsan, PornthepFasching, Peter ARuebner, MatthiasEkici, Arif BBeckmann, Matthias WPeto, Juliandos-Santos-Silva, IsabelFletcher, OliviaJohnson, NicholaPharoah, Paul DPBolla, Manjeet KWang, QinDennis, JoeSawyer, Elinor JTomlinson, IanKerin, Michael JMiller, NicolaBurwinkel, BarbaraMarme, FrederikYang, RongxiSurowy, HaraldGuénel, PascalTruong, ThérèseMenegaux, FlorenceSanchez, MarieBojesen, Stig ENordestgaard, Børge GNielsen, Sune FFlyger, HenrikGonzález-Neira, AnnaBenitez, JavierZamora, M PilarPerez, Jose Ignacio AriasAnton-Culver, HodaNeuhausen, Susan LBrenner, HermannDieffenbach, Aida KarinaArndt, VolkerStegmaier, ChristaMeindl, AlfonsSchmutzler, Rita KBrauch, HiltrudKo, Yon-DschunBrüning, ThomasNetwork, The GENICANevanlinna, HeliMuranen, Taru AAittomäki, KristiinaBlomqvist, CarlMatsuo, KeitaroIto, HidemiIwata, HirojiTanaka, HideoDörk, ThiloBogdanova, Natalia VHelbig, SonjaLindblom, AnnikaMargolin, SaraMannermaa, ArtoKataja, VesaKosma, Veli-MattiHartikainen, Jaana MInvestigators, kConFabWu, Anna HTseng, Chiu-chenVan Den Berg, DavidStram, Daniel OLambrechts, DietherZhao, HuiWeltens, Carolinevan Limbergen, ErikChang-Claude, JennyFlesch-Janys, DieterRudolph, AnjaSeibold, PetraRadice, Paolo
Source
American Journal of Human Genetics. 96(1)
Subject
Biological Sciences
Biomedical and Clinical Sciences
Genetics
Oncology and Carcinogenesis
Human Genome
Prevention
Breast Cancer
Cancer
Estrogen
2.1 Biological and endogenous factors
Aetiology
Alleles
Breast Neoplasms
Case-Control Studies
Cell Line
Tumor
Chromosome Mapping
Chromosomes
Human
Pair 5
Female
Genetic Predisposition to Disease
Genome-Wide Association Study
Genotyping Techniques
Humans
MAP Kinase Kinase Kinase 1
MCF-7 Cells
Polymorphism
Single Nucleotide
Promoter Regions
Genetic
Quantitative Trait Loci
Racial Groups
Risk Factors
GENICA Network
kConFab Investigators
Norwegian Breast Cancer Study
Medical and Health Sciences
Genetics & Heredity
Biological sciences
Biomedical and clinical sciences
Health sciences
Language
Abstract
Genome-wide association studies (GWASs) have revealed SNP rs889312 on 5q11.2 to be associated with breast cancer risk in women of European ancestry. In an attempt to identify the biologically relevant variants, we analyzed 909 genetic variants across 5q11.2 in 103,991 breast cancer individuals and control individuals from 52 studies in the Breast Cancer Association Consortium. Multiple logistic regression analyses identified three independent risk signals: the strongest associations were with 15 correlated variants (iCHAV1), where the minor allele of the best candidate, rs62355902, associated with significantly increased risks of both estrogen-receptor-positive (ER(+): odds ratio [OR] = 1.24, 95% confidence interval [CI] = 1.21-1.27, ptrend = 5.7 × 10(-44)) and estrogen-receptor-negative (ER(-): OR = 1.10, 95% CI = 1.05-1.15, ptrend = 3.0 × 10(-4)) tumors. After adjustment for rs62355902, we found evidence of association of a further 173 variants (iCHAV2) containing three subsets with a range of effects (the strongest was rs113317823 [pcond = 1.61 × 10(-5)]) and five variants composing iCHAV3 (lead rs11949391; ER(+): OR = 0.90, 95% CI = 0.87-0.93, pcond = 1.4 × 10(-4)). Twenty-six percent of the prioritized candidate variants coincided with four putative regulatory elements that interact with the MAP3K1 promoter through chromatin looping and affect MAP3K1 promoter activity. Functional analysis indicated that the cancer risk alleles of four candidates (rs74345699 and rs62355900 [iCHAV1], rs16886397 [iCHAV2a], and rs17432750 [iCHAV3]) increased MAP3K1 transcriptional activity. Chromatin immunoprecipitation analysis revealed diminished GATA3 binding to the minor (cancer-protective) allele of rs17432750, indicating a mechanism for its action. We propose that the cancer risk alleles act to increase MAP3K1 expression in vivo and might promote breast cancer cell survival.