A genome-wide gene-environment interaction study of breast cancer risk for women of European ancestry
Middha, P.; Wang, X.; Behrens, S.; Bolla, M.K.; Wang, Q.; Dennis, J.; Michailidou, K.; Ahearn, T.U.; Andrulis, I.L.; Anton-Culver, H.; Arndt, V.; Aronson, K.J.; Auer, P.L.; Augustinsson, A.; Baert, T.; Freeman, L.E.B.; Becher, H.; Beckmann, M.W.; Benitez, J.; Bojesen, S.E.; Brauch, H.; Brenner, H.; Brooks-Wilson, A.; Campa, D.; Canzian, F.; Carracedo Álvarez, Ángel; Castelao Fernández, José Esteban; Chanock, S.J.; Chenevix-Trench, G.; Cordina-Duverger, E.; Couch, F.J.; Cox, A.; Cross, S.S.; Czene, K.; Dossus, L.; Dugué, P.-A.; Eliassen, A.H.; Eriksson, M.; Evans, D.G.; Fasching, P.A.; Figueroa, J.D.; Fletcher, O.; Flyger, H.; Gabrielson, M.; Gago Dominguez, Manuela; Giles, G.G.; González-Neira, A.; Grassmann, F.; Grundy, A.; Guénel, P.; Haiman, C.A.; Håkansson, N.; Hall, P.; Hamann, U.; Hankinson, S.E.; Harkness, E.F.; Holleczek, B.; Hoppe, R.; Hopper, J.L.; Houlston, R.S.; Howell, A.; Hunter, D.J.; Ingvar, C.; Isaksson, K.; Jernström, H.; John, E.M.; Jones, M.E.; Kaaks, R.; Keeman, R.; Kitahara, C.M.; Ko, Y.-D.; Koutros, S.; Kurian, A.W.; Lacey, J.V.; Lambrechts, D.; Larson, N.L.; Larsson, S.; Le Marchand, L.; Lejbkowicz, F.; Li, S.; Linet, M.; Lissowska, J.; Martinez, M.E.; Maurer, T.; Mulligan, A.M.; Mulot, C.; Murphy, R.A.; Newman, W.G.; Nielsen, S.F.; Nordestgaard, B.G.; Norman, A.; O'Brien, K.M.; Olson, J.E.; Patel, A.V.; Prentice, R.; Rees-Punia, E.; Rennert, G.; Rhenius, V.; Ruddy, K.J.; Sandler, D.P.; Scott, C.G.; Shah, M.; Shu, X.-O.; Smeets, A.; Southey, M.C.; Stone, J.; Tamimi, R.M.; Taylor, J.A.; Teras, L.R.; Tomczyk, K.; Troester, M.A.; Truong, T.; Vachon, C.M.; Wang, S.S.; Weinberg, C.R.; Wildiers, H.; Willett, W.; Winham, S.J.; Wolk, A.; Yang, X.R.; Zamora, M.P.; Zheng, W.; Ziogas, A.; Dunning, A.M.; Pharoah, P.D.P.; García-Closas, M.; Schmidt, M.K.; Kraft, P.; Milne, R.L.; Lindström, S.; Easton, D.F.; Chang-Claude, J.; Castelao Fernández, José Esteban

Identificadores
Identificadores
Visualización ou descarga de ficheiros
Visualización ou descarga de ficheiros
Data de publicación
2023Título da revista
Breast cancer research : BCR
Tipo de contido
Artigo
MeSH
Adult | Female | Humans | Gene-Environment Interaction | Genetic Predisposition to Disease | Breast Neoplasms | Bayes Theorem | Genome-Wide Association Study | Risk Factors | Polymorphism, Single Nucleotide | Case-Control StudiesResumo
BACKGROUND: Genome-wide studies of gene-environment interactions (G×E) may identify variants associated with disease risk in conjunction with lifestyle/environmental exposures. We conducted a genome-wide G×E analysis of ~ 7.6 million common variants and seven lifestyle/environmental risk factors for breast cancer risk overall and for estrogen receptor positive (ER +) breast cancer. METHODS: Analyses were conducted using 72,285 breast cancer cases and 80,354 controls of European ancestry from the Breast Cancer Association Consortium. Gene-environment interactions were evaluated using standard unconditional logistic regression models and likelihood ratio tests for breast cancer risk overall and for ER + breast cancer. Bayesian False Discovery Probability was employed to assess the noteworthiness of each SNP-risk factor pairs. RESULTS: Assuming a 1 × 10-5 prior probability of a true association for each SNP-risk factor pairs and a Bayesian False Discovery Probability < 15%, we identified two independent SNP-risk factor pairs: rs80018847(9p13)-LINGO2 and adult height in association with overall breast cancer risk (ORint = 0.94, 95% CI 0.92-0.96), and rs4770552(13q12)-SPATA13 and age at menarche for ER + breast cancer risk (ORint = 0.91, 95% CI 0.88-0.94). CONCLUSIONS: Overall, the contribution of G×E interactions to the heritability of breast cancer is very small. At the population level, multiplicative G×E interactions do not make an important contribution to risk prediction in breast cancer.
A non ser que se indique outra cousa, a licenza do ítem descríbese comoAttribution 4.0 International (CC BY 4.0)
