학술논문

Identification of New Genetic Susceptibility Loci for Breast Cancer Through Consideration of Gene‐Environment Interactions
Document Type
article
Author
Schoeps, AnjaRudolph, AnjaSeibold, PetraDunning, Alison MMilne, Roger LBojesen, Stig ESwerdlow, AnthonyAndrulis, IreneBrenner, HermannBehrens, SabineOrr, NicholasJones, MichaelAshworth, AlanLi, JingmeiCramp, HelenConnley, DanCzene, KamilaDarabi, HatefChanock, Stephen JLissowska, JolantaFigueroa, Jonine DKnight, JuliaGlendon, GordMulligan, Anna MDumont, MartineSeveri, GianlucaBaglietto, LauraOlson, JanetVachon, CelinePurrington, KristenMoisse, MatthieuNeven, PatrickWildiers, HansSpurdle, AmandaKosma, Veli‐MattiKataja, VesaHartikainen, Jaana MHamann, UteKo, Yon‐DschunDieffenbach, Aida KArndt, VolkerStegmaier, ChristaMalats, NúriaPerez, José I AriasBenítez, JavierFlyger, HenrikNordestgaard, Børge GTruong, ThérèseCordina‐Duverger, EmilieMenegaux, Florencedos Santos Silva, IsabelFletcher, OliviaJohnson, NicholaHäberle, LotharBeckmann, Matthias WEkici, Arif BBraaf, LindeAtsma, FemkeBroek, Alexandra J denMakalic, EnesSchmidt, Daniel FSouthey, Melissa CCox, AngelaSimard, JacquesGiles, Graham GLambrechts, DietherMannermaa, ArtoBrauch, HiltrudGuénel, PascalPeto, JulianFasching, Peter AHopper, JohnFlesch‐Janys, DieterCouch, FergusChenevix‐Trench, GeorgiaPharoah, Paul DPGarcia‐Closas, MontserratSchmidt, Marjanka KHall, PerEaston, Douglas FChang‐Claude, Jenny
Source
Genetic Epidemiology. 38(1)
Subject
Biological Sciences
Genetics
Epidemiology
Health Services and Systems
Health Sciences
Genetic Testing
Human Genome
Prevention
Breast Cancer
Aging
Clinical Research
Cancer
Aetiology
2.1 Biological and endogenous factors
Adolescent
Body Height
Body Mass Index
Breast Neoplasms
Chromosomes
Human
Pair 21
Chromosomes
Human
Pair 6
Female
Gene-Environment Interaction
Genetic Loci
Genetic Predisposition to Disease
Humans
Linkage Disequilibrium
Menarche
Middle Aged
Parity
Polymorphism
Single Nucleotide
Postmenopause
White People
breast cancer risk
gene-environment interaction
polymorphisms
body mass index
case-control study
Public Health and Health Services
Language
Abstract
Genes that alter disease risk only in combination with certain environmental exposures may not be detected in genetic association analysis. By using methods accounting for gene-environment (G × E) interaction, we aimed to identify novel genetic loci associated with breast cancer risk. Up to 34,475 cases and 34,786 controls of European ancestry from up to 23 studies in the Breast Cancer Association Consortium were included. Overall, 71,527 single nucleotide polymorphisms (SNPs), enriched for association with breast cancer, were tested for interaction with 10 environmental risk factors using three recently proposed hybrid methods and a joint test of association and interaction. Analyses were adjusted for age, study, population stratification, and confounding factors as applicable. Three SNPs in two independent loci showed statistically significant association: SNPs rs10483028 and rs2242714 in perfect linkage disequilibrium on chromosome 21 and rs12197388 in ARID1B on chromosome 6. While rs12197388 was identified using the joint test with parity and with age at menarche (P-values = 3 × 10(-07)), the variants on chromosome 21 q22.12, which showed interaction with adult body mass index (BMI) in 8,891 postmenopausal women, were identified by all methods applied. SNP rs10483028 was associated with breast cancer in women with a BMI below 25 kg/m(2) (OR = 1.26, 95% CI 1.15-1.38) but not in women with a BMI of 30 kg/m(2) or higher (OR = 0.89, 95% CI 0.72-1.11, P for interaction = 3.2 × 10(-05)). Our findings confirm comparable power of the recent methods for detecting G × E interaction and the utility of using G × E interaction analyses to identify new susceptibility loci.