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Data from A Transcriptome-Wide Association Study Among 97,898 Women to Identify Candidate Susceptibility Genes for Epithelial Ovarian Cancer Risk

Authors :
Jirong Long
Wei Zheng
Paul D.P. Pharoah
Thomas A. Sellers
Georgia Chenevix-Trench
Ellen L. Goode
Andrew Berchuck
Antonis C. Antoniou
Simon A. Gayther
Kristin K. Zorn
Drakoulis Yannoukakos
Anna H. Wu
Alicja Wolk
Emily White
Nicolas Wentzensen
Jeffrey N. Weitzel
Penelope M. Webb
Digna Velez Edwards
Ana Vega
Adriaan Vanderstichele
Elizabeth J. van Rensburg
Shelley S. Tworoger
Nadine Tung
Antonia Trichopoulou
Amanda E. Toland
Marc Tischkowitz
Mads Thomassen
Soo H. Teo
Manuel R. Teixeira
Anthony J. Swerdlow
Rebecca Sutphen
Amanda B. Spurdle
Melissa C. Southey
Honglin Song
Christian F. Singer
Jacques Simard
Weiva Sieh
Priyanka Sharma
Veronica W. Setiawan
Rita K. Schmutzler
Dale P. Sandler
Iwona K. Rzepecka
Mary Anne Rossing
Matti A. Rookus
Isabelle Romieu
Cristina Rodríguez-Antona
Gustavo C. Rodriguez
Harvey Risch
Gad Rennert
Susan J. Ramus
Miquel Angel Pujana
Catherine M. Phelan
Paolo Peterlongo
Tanja Pejovic
Petra H.M. Peeters
Michael T. Parsons
Sue K. Park
Ana Osorio
Håkan Olsson
Sara H. Olson
Olufunmilayo I. Olopade
Edith Olah
Kenneth Offit
Robert L. Nussbaum
Liene Nikitina-Zake
Finn C. Nielsen
Heli Nevanlinna
Susan L. Neuhausen
Marco Montagna
Francesmary Modugno
Melissa A. Merritt
Iain A. McNeish
Lesley McGuffog
Taymaa May
Amalia Mattiello
Douglas A. Levine
Fabienne Lesueur
Goska Leslie
Nhu D. Le
Ava Kwong
Susanne K. Kjaer
Lambertus A. Kiemeney
Linda E. Kelemen
Beth Y. Karlan
Paul James
Anna Jakubowska
Claudine Isaacs
Evgeny N. Imyanitov
David G. Huntsman
Peter J. Hulick
Antoinette Hollestelle
Claus K. Høgdall
Michelle A.T. Hildebrandt
Florian Heitz
Ute Hamann
Jacek Gronwald
Mark H. Greene
Marc T. Goodman
David E. Goldgar
Andrew K. Godwin
Graham G. Giles
Judy Garber
Patricia A. Ganz
Eitan Friedman
George Fountzilas
Renée T. Fortner
Peter A. Fasching
Diana M. Eccles
Douglas F. Easton
Thilo Dörk
Susan M. Domchek
Orland Diez
Joe Dennis
Anna deFazio
Mary B. Daly
Daniel W. Cramer
Fergus J. Couch
Kathleen B.M. Claes
Jenny Chang-Claude
Ian Campbell
Maria A. Caligo
Trinidad Caldes
Ralf Butzow
James Brenton
Line Bjorge
Javier Benitez
Daniel R. Barnes
Rosa B. Barkardottir
Elisa V. Bandera
Banu K. Arun
Hoda Anton-Culver
Irene L. Andrulis
Kirsten B. Moysich
Jamie K. Teer
Brett M. Reid
Jennifer B. Permuth
Yian A. Chen
Hae Kyung Im
Joellen M. Schildkraut
Bingshan Li
Xingyi Guo
Lang Wu
Alicia Beeghly-Fadiel
Yingchang Lu
Publication Year :
2023
Publisher :
American Association for Cancer Research (AACR), 2023.

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.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....7e690127f98de38e275c696f108a3156