학술논문

A Transcriptome-Wide Association Study Among 97,898 Women to Identify Candidate Susceptibility Genes for Epithelial Ovarian Cancer Risk
Document Type
article
Author
Lu, YingchangBeeghly-Fadiel, AliciaWu, LangGuo, XingyiLi, BingshanSchildkraut, Joellen MIm, Hae KyungChen, Yian APermuth, Jennifer BReid, Brett MTeer, Jamie KMoysich, Kirsten BAndrulis, Irene LAnton-Culver, HodaArun, Banu KBandera, Elisa VBarkardottir, Rosa BBarnes, Daniel RBenitez, JavierBjorge, LineBrenton, JamesButzow, RalfCaldes, TrinidadCaligo, Maria ACampbell, IanChang-Claude, JennyClaes, Kathleen BMCouch, Fergus JCramer, Daniel WDaly, Mary BdeFazio, AnnaDennis, JoeDiez, OrlandDomchek, Susan MDörk, ThiloEaston, Douglas FEccles, Diana MFasching, Peter AFortner, Renée TFountzilas, GeorgeFriedman, EitanGanz, Patricia AGarber, JudyGiles, Graham GGodwin, Andrew KGoldgar, David EGoodman, Marc TGreene, Mark HGronwald, JacekHamann, UteHeitz, FlorianHildebrandt, Michelle ATHøgdall, Claus KHollestelle, AntoinetteHulick, Peter JHuntsman, David GImyanitov, Evgeny NIsaacs, ClaudineJakubowska, AnnaJames, PaulKarlan, Beth YKelemen, Linda EKiemeney, Lambertus AKjaer, Susanne KKwong, AvaLe, Nhu DLeslie, GoskaLesueur, FabienneLevine, Douglas AMattiello, AmaliaMay, TaymaaMcGuffog, LesleyMcNeish, Iain AMerritt, Melissa AModugno, FrancesmaryMontagna, MarcoNeuhausen, Susan LNevanlinna, HeliNielsen, Finn CNikitina-Zake, LieneNussbaum, Robert LOffit, KennethOlah, EdithOlopade, Olufunmilayo IOlson, Sara HOlsson, HåkanOsorio, AnaPark, Sue KParsons, Michael TPeeters, Petra HMPejovic, TanjaPeterlongo, PaoloPhelan, Catherine MPujana, Miquel AngelRamus, Susan JRennert, GadRisch, HarveyRodriguez, Gustavo CRodríguez-Antona, CristinaRomieu, Isabelle
Source
Cancer Research. 78(18)
Subject
Biological Sciences
Biomedical and Clinical Sciences
Genetics
Prevention
Human Genome
Ovarian Cancer
Rare Diseases
Cancer
2.1 Biological and endogenous factors
Aetiology
Carcinogenesis
Carcinoma
Ovarian Epithelial
Cohort Studies
Female
Gene Expression Profiling
Genetic Predisposition to Disease
Genome-Wide Association Study
Genotype
Humans
Ovarian Neoplasms
Polymorphism
Single Nucleotide
Prognosis
Quantitative Trait Loci
Risk Factors
Transcriptome
Oncology and Carcinogenesis
Oncology & Carcinogenesis
Biochemistry and cell biology
Oncology and carcinogenesis
Language
Abstract
Large-scale genome-wide association studies (GWAS) have identified approximately 35 loci associated with epithelial ovarian cancer (EOC) risk. The majority of GWAS-identified disease susceptibility variants are located in noncoding regions, and causal genes underlying these associations remain largely unknown. Here, we performed a transcriptome-wide association study to search for novel genetic loci and plausible causal genes at known GWAS loci. We used RNA sequencing data (68 normal ovarian tissue samples from 68 individuals and 6,124 cross-tissue samples from 369 individuals) and high-density genotyping data from European descendants of the Genotype-Tissue Expression (GTEx V6) project to build ovarian and cross-tissue models of genetically regulated expression using elastic net methods. We evaluated 17,121 genes for their cis-predicted gene expression in relation to EOC risk using summary statistics data from GWAS of 97,898 women, including 29,396 EOC cases. With a Bonferroni-corrected significance level of P < 2.2 × 10-6, we identified 35 genes, including FZD4 at 11q14.2 (Z = 5.08, P = 3.83 × 10-7, the cross-tissue model; 1 Mb away from any GWAS-identified EOC risk variant), a potential novel locus for EOC risk. All other 34 significantly associated genes were located within 1 Mb of known GWAS-identified loci, including 23 genes at 6 loci not previously linked to EOC risk. Upon conditioning on nearby known EOC GWAS-identified variants, the associations for 31 genes disappeared and three genes remained (P < 1.47 × 10-3). These data identify one novel locus (FZD4) and 34 genes at 13 known EOC risk loci associated with EOC risk, providing new insights into EOC carcinogenesis.Significance: Transcriptomic analysis of a large cohort confirms earlier GWAS loci and reveals FZD4 as a novel locus associated with EOC risk. Cancer Res; 78(18); 5419-30. ©2018 AACR.