Résumé
Previous genome-wide association studies (GWAS) have identified six risk loci for renal cell carcinoma (RCC). We conducted a meta-analysis of two new scans of 5,198 cases and 7,331 controls together with four existing scans, totalling 10,784 cases and 20,406 controls of European ancestry. Twenty-four loci were tested in an additional 3,182 cases and 6,301 controls. We confirm the six known RCC risk loci and identify seven new loci at 1p32.3 (rs4381241, P = 3.1×10-10), 3p22.1 (rs67311347, P = 2.5×10-8), 3q26.2 (rs10936602, P = 8.8×10-9), 8p21.3 (rs2241261, P = 5.8×10-9), 10q24.33-q25.1 (rs11813268, P = 3.9×10-8), 11q22.3 (rs74911261, P = 2.1×10-10) and 14q24.2 (rs4903064, P = 2.2×10-24). Expression quantitative trait analyses suggest plausible candidate genes at these regions that may contribute to RCC susceptibility.
langue originale | Anglais |
---|---|
Numéro d'article | 15724 |
journal | Nature Communications |
Volume | 8 |
Les DOIs | |
état | Publié - 1 janv. 2017 |
Modification externe | Oui |
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Dans: Nature Communications, Vol 8, 15724, 01.01.2017.
Résultats de recherche: Contribution à un journal › Article › Revue par des pairs
TY - JOUR
T1 - Genome-wide association study identifies multiple risk loci for renal cell carcinoma
AU - Scelo, Ghislaine
AU - Purdue, Mark P.
AU - Brown, Kevin M.
AU - Johansson, Mattias
AU - Wang, Zhaoming
AU - Eckel-Passow, Jeanette E.
AU - Ye, Yuanqing
AU - Hofmann, Jonathan N.
AU - Choi, Jiyeon
AU - Foll, Matthieu
AU - Gaborieau, Valerie
AU - Machiela, Mitchell J.
AU - Colli, Leandro M.
AU - Li, Peng
AU - Sampson, Joshua N.
AU - Abedi-Ardekani, Behnoush
AU - Besse, Celine
AU - Blanche, Helene
AU - Boland, Anne
AU - Burdette, Laurie
AU - Chabrier, Amelie
AU - Durand, Geoffroy
AU - Le Calvez-Kelm, Florence
AU - Prokhortchouk, Egor
AU - Robinot, Nivonirina
AU - Skryabin, Konstantin G.
AU - Wozniak, Magdalena B.
AU - Yeager, Meredith
AU - Basta-Jovanovic, Gordana
AU - Dzamic, Zoran
AU - Foretova, Lenka
AU - Holcatova, Ivana
AU - Janout, Vladimir
AU - Mates, Dana
AU - Mukeriya, Anush
AU - Rascu, Stefan
AU - Zaridze, David
AU - Bencko, Vladimir
AU - Cybulski, Cezary
AU - Fabianova, Eleonora
AU - Jinga, Viorel
AU - Lissowska, Jolanta
AU - Lubinski, Jan
AU - Navratilova, Marie
AU - Rudnai, Peter
AU - Szeszenia-Dabrowska, Neonila
AU - Benhamou, Simone
AU - Cancel-Tassin, Geraldine
AU - Cussenot, Olivier
AU - Baglietto, Laura
AU - Boeing, Heiner
AU - Khaw, Kay Tee
AU - Weiderpass, Elisabete
AU - Ljungberg, Borje
AU - Sitaram, Raviprakash T.
AU - Bruinsma, Fiona
AU - Jordan, Susan J.
AU - Severi, Gianluca
AU - Winship, Ingrid
AU - Hveem, Kristian
AU - Vatten, Lars J.
AU - Fletcher, Tony
AU - Koppova, Kvetoslava
AU - Larsson, Susanna C.
AU - Wolk, Alicja
AU - Banks, Rosamonde E.
AU - Selby, Peter J.
AU - Easton, Douglas F.
AU - Pharoah, Paul
AU - Andreotti, Gabriella
AU - Freeman, Laura E.Beane
AU - Koutros, Stella
AU - Albanes, Demetrius
AU - Männistö, Satu
AU - Weinstein, Stephanie
AU - Clark, Peter E.
AU - Edwards, Todd L.
AU - Lipworth, Loren
AU - Gapstur, Susan M.
AU - Stevens, Victoria L.
AU - Carol, Hallie
AU - Freedman, Matthew L.
AU - Pomerantz, Mark M.
AU - Cho, Eunyoung
AU - Kraft, Peter
AU - Preston, Mark A.
AU - Wilson, Kathryn M.
AU - Gaziano, J. Michael
AU - Sesso, Howard D.
AU - Black, Amanda
AU - Freedman, Neal D.
AU - Huang, Wen Yi
AU - Anema, John G.
AU - Kahnoski, Richard J.
AU - Lane, Brian R.
AU - Noyes, Sabrina L.
AU - Petillo, David
AU - Teh, Bin Tean
AU - Peters, Ulrike
AU - White, Emily
AU - Anderson, Garnet L.
AU - Johnson, Lisa
AU - Luo, Juhua
AU - Buring, Julie
AU - Lee, I. Min
AU - Chow, Wong Ho
AU - Moore, Lee E.
AU - Wood, Christopher
AU - Eisen, Timothy
AU - Henrion, Marc
AU - Larkin, James
AU - Barman, Poulami
AU - Leibovich, Bradley C.
AU - Choueiri, Toni K.
AU - Lathrop, G. Mark
AU - Rothman, Nathaniel
AU - Deleuze, Jean Francois
AU - McKay, James D.
AU - Parker, Alexander S.
AU - Wu, Xifeng
AU - Houlston, Richard S.
AU - Brennan, Paul
AU - Chanock, Stephen J.
N1 - Publisher Copyright: © The Author(s) 2017.
PY - 2017/1/1
Y1 - 2017/1/1
N2 - Previous genome-wide association studies (GWAS) have identified six risk loci for renal cell carcinoma (RCC). We conducted a meta-analysis of two new scans of 5,198 cases and 7,331 controls together with four existing scans, totalling 10,784 cases and 20,406 controls of European ancestry. Twenty-four loci were tested in an additional 3,182 cases and 6,301 controls. We confirm the six known RCC risk loci and identify seven new loci at 1p32.3 (rs4381241, P = 3.1×10-10), 3p22.1 (rs67311347, P = 2.5×10-8), 3q26.2 (rs10936602, P = 8.8×10-9), 8p21.3 (rs2241261, P = 5.8×10-9), 10q24.33-q25.1 (rs11813268, P = 3.9×10-8), 11q22.3 (rs74911261, P = 2.1×10-10) and 14q24.2 (rs4903064, P = 2.2×10-24). Expression quantitative trait analyses suggest plausible candidate genes at these regions that may contribute to RCC susceptibility.
AB - Previous genome-wide association studies (GWAS) have identified six risk loci for renal cell carcinoma (RCC). We conducted a meta-analysis of two new scans of 5,198 cases and 7,331 controls together with four existing scans, totalling 10,784 cases and 20,406 controls of European ancestry. Twenty-four loci were tested in an additional 3,182 cases and 6,301 controls. We confirm the six known RCC risk loci and identify seven new loci at 1p32.3 (rs4381241, P = 3.1×10-10), 3p22.1 (rs67311347, P = 2.5×10-8), 3q26.2 (rs10936602, P = 8.8×10-9), 8p21.3 (rs2241261, P = 5.8×10-9), 10q24.33-q25.1 (rs11813268, P = 3.9×10-8), 11q22.3 (rs74911261, P = 2.1×10-10) and 14q24.2 (rs4903064, P = 2.2×10-24). Expression quantitative trait analyses suggest plausible candidate genes at these regions that may contribute to RCC susceptibility.
UR - http://www.scopus.com/inward/record.url?scp=85030655065&partnerID=8YFLogxK
U2 - 10.1038/ncomms15724
DO - 10.1038/ncomms15724
M3 - Article
C2 - 28598434
AN - SCOPUS:85030655065
SN - 2041-1723
VL - 8
JO - Nature Communications
JF - Nature Communications
M1 - 15724
ER -