Abstract
Original language | English |
---|---|
Pages (from-to) | 1103-9 |
Number of pages | 1093 |
Journal | Nat Genet |
Volume | 46 |
Issue number | 10 |
DOIs | |
Publication status | Published - 14 Sept 2014 |
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In: Nat Genet, Vol. 46, No. 10, 14.09.2014, p. 1103-9.
Research output: Contribution to journal › Article › peer-review
TY - JOUR
T1 - A meta-analysis of 87,040 individuals identifies 23 new susceptibility loci for prostate cancer
AU - Al Olama, A A
AU - Kote-Jarai, Z
AU - Berndt, S I
AU - Conti, D V
AU - Schumacher, F
AU - Han, Y
AU - Benlloch, S
AU - Hazelett, D J
AU - Wang, Z
AU - Saunders, E
AU - Leongamornlert, D
AU - Lindstrom, S
AU - Jugurnauth-Little, S
AU - Dadaev, T
AU - Tymrakiewicz, M
AU - Stram, D O
AU - Rand, K
AU - Wan, P
AU - Stram, A
AU - Sheng, X
AU - Pooler, L C
AU - Park, K
AU - Xia, L
AU - Tyrer, J
AU - Kolonel, L N
AU - Le Marchand, L
AU - Hoover, R N
AU - Machiela, M J
AU - Yeager, M
AU - Burdette, L
AU - Chung, C C
AU - Hutchinson, A
AU - Yu, K
AU - Goh, C
AU - Ahmed, M
AU - Govindasami, K
AU - Guy, M
AU - Tammela, T L
AU - Auvinen, A
AU - Wahlfors, T
AU - Schleutker, J
AU - Visakorpi, T
AU - Leinonen, K A
AU - Xu, J
AU - Aly, M
AU - Donovan, J
AU - Travis, R C
AU - Key, T J
AU - Siddiq, A
AU - Canzian, F
AU - Khaw, K T
AU - Takahashi, A
AU - Kubo, M
AU - Pharoah, P
AU - Pashayan, N
AU - Weischer, M
AU - Nordestgaard, B G
AU - Nielsen, S F
AU - Klarskov, P
AU - Roder, M A
AU - Iversen, P
AU - Thibodeau, S N
AU - McDonnell, S K
AU - Schaid, D J
AU - Stanford, J L
AU - Kolb, S
AU - Holt, S
AU - Knudsen, B
AU - Coll, A H
AU - Gapstur, S M
AU - Diver, W R
AU - Stevens, V L
AU - Maier, C
AU - Luedeke, M
AU - Herkommer, K
AU - Rinckleb, A E
AU - Strom, S S
AU - Pettaway, C
AU - Yeboah, E D
AU - Tettey, Y
AU - Biritwum, R B
AU - Adjei, A A
AU - Tay, E
AU - Truelove, A
AU - Niwa, S
AU - Chokkalingam, A P
AU - Cannon-Albright, L
AU - Cybulski, C
AU - Wokolorczyk, D
AU - Kluzniak, W
AU - Park, J
AU - Sellers, T
AU - Lin, H Y
AU - Isaacs, W B
AU - Partin, A W
AU - Brenner, H
AU - Dieffenbach, A K
AU - Stegmaier, C
AU - Chen, C
AU - Giovannucci, E L
AU - Ma, J
AU - Stampfer, M
AU - Penney, K L
AU - Mucci, L
AU - John, E M
AU - Ingles, S A
AU - Kittles, R A
AU - Murphy, A B
AU - Pandha, H
AU - Michael, A
AU - Kierzek, A M
AU - Blot, W
AU - Signorello, L B
AU - Zheng, W
AU - Albanes, D
AU - Virtamo, J
AU - Weinstein, S
AU - Nemesure, B
AU - Carpten, J
AU - Leske, C
AU - Wu, S Y
AU - Hennis, A
AU - Kibel, A S
AU - Rybicki, B A
AU - Neslund-Dudas, C
AU - Hsing, A W
AU - Chu, L
AU - Goodman, P J
AU - Klein, E A
AU - Zheng, S L
AU - Batra, J
AU - Clements, J
AU - Spurdle, A
AU - Teixeira, M R
AU - Paulo, P
AU - Maia, S
AU - Slavov, C
AU - Kaneva, R
AU - Mitev, V
AU - Witte, J S
AU - Casey, G
AU - Gillanders, E M
AU - Seminara, D
AU - Riboli, E
AU - Hamdy, F C
AU - Coetzee, G A
AU - Li, Q
AU - Freedman, M L
AU - Hunter, D J
AU - Muir, K
AU - Gronberg, H
AU - Neal, D E
AU - Southey, M
AU - Giles, G G
AU - Severi, G
AU - Cook, M B
AU - Nakagawa, H
AU - Wiklund, F
AU - Kraft, P
AU - Chanock, S J
AU - Henderson, B E
AU - Easton, D F
AU - Eeles, R A
AU - Haiman, C A
N1 - Al Olama, Ali Amin Kote-Jarai, Zsofia Berndt, Sonja I Conti, David V Schumacher, Fredrick Han, Ying Benlloch, Sara Hazelett, Dennis J Wang, Zhaoming Saunders, Ed Leongamornlert, Daniel Lindstrom, Sara Jugurnauth-Little, Sara Dadaev, Tokhir Tymrakiewicz, Malgorzata Stram, Daniel O Rand, Kristin Wan, Peggy Stram, Alex Sheng, Xin Pooler, Loreall C Park, Karen Xia, Lucy Tyrer, Jonathan Kolonel, Laurence N Le Marchand, Loic Hoover, Robert N Machiela, Mitchell J Yeager, Merideth Burdette, Laurie Chung, Charles C Hutchinson, Amy Yu, Kai Goh, Chee Ahmed, Mahbubl Govindasami, Koveela Guy, Michelle Tammela, Teuvo L J Auvinen, Anssi Wahlfors, Tiina Schleutker, Johanna Visakorpi, Tapio Leinonen, Katri A Xu, Jianfeng Aly, Markus Donovan, Jenny Travis, Ruth C Key, Tim J Siddiq, Afshan Canzian, Federico Khaw, Kay-Tee Takahashi, Atsushi Kubo, Michiaki Pharoah, Paul Pashayan, Nora Weischer, Maren Nordestgaard, Borge G Nielsen, Sune F Klarskov, Peter Roder, Martin Andreas Iversen, Peter Thibodeau, Stephen N McDonnell, Shannon K Schaid, Daniel J Stanford, Janet L Kolb, Suzanne Holt, Sarah Knudsen, Beatrice Coll, Antonio Hurtado Gapstur, Susan M Diver, W Ryan Stevens, Victoria L Maier, Christiane Luedeke, Manuel Herkommer, Kathleen Rinckleb, Antje E Strom, Sara S Pettaway, Curtis Yeboah, Edward D Tettey, Yao Biritwum, Richard B Adjei, Andrew A Tay, Evelyn Truelove, Ann Niwa, Shelley Chokkalingam, Anand P Cannon-Albright, Lisa Cybulski, Cezary Wokolorczyk, Dominika Kluzniak, Wojciech Park, Jong Sellers, Thomas Lin, Hui-Yi Isaacs, William B Partin, Alan W Brenner, Hermann Dieffenbach, Aida Karina Stegmaier, Christa Chen, Constance Giovannucci, Edward L Ma, Jing Stampfer, Meir Penney, Kathryn L Mucci, Lorelei John, Esther M Ingles, Sue A Kittles, Rick A Murphy, Adam B Pandha, Hardev Michael, Agnieszka Kierzek, Andrzej M Blot, William Signorello, Lisa B Zheng, Wei Albanes, Demetrius Virtamo, Jarmo Weinstein, Stephanie Nemesure, Barbara Carpten, John Leske, Cristina Wu, Suh-Yuh Hennis, Anselm Kibel, Adam S Rybicki, Benjamin A Neslund-Dudas, Christine Hsing, Ann W Chu, Lisa Goodman, Phyllis J Klein, Eric A Zheng, S Lilly Batra, Jyotsna Clements, Judith Spurdle, Amanda Teixeira, Manuel R Paulo, Paula Maia, Sofia Slavov, Chavdar Kaneva, Radka Mitev, Vanio Witte, John S Casey, Graham Gillanders, Elizabeth M Seminara, Daniella Riboli, Elio Hamdy, Freddie C Coetzee, Gerhard A Li, Qiyuan Freedman, Matthew L Hunter, David J Muir, Kenneth Gronberg, Henrik Neal, David E Southey, Melissa Giles, Graham G Severi, Gianluca Breast and Prostate Cancer Cohort Consortium (BPC3) PRACTICAL (Prostate Cancer Association Group to Investigate Cancer-Associated Alterations in the Genome) Consortium COGS (Collaborative Oncological Gene-environment Study) Consortium GAME-ON/ELLIPSE Consortium Cook, Michael B Nakagawa, Hidewaki Wiklund, Fredrik Kraft, Peter Chanock, Stephen J Henderson, Brian E Easton, Douglas F Eeles, Rosalind A Haiman, Christopher A 16561/Cancer Research UK/United Kingdom G1000143/Medical Research Council/United Kingdom P30 CA042014/CA/NCI NIH HHS/United States P30 CA068485/CA/NCI NIH HHS/United States P30 ES007784/ES/NIEHS NIH HHS/United States P50 CA140388/CA/NCI NIH HHS/United States R01 CA056678/CA/NCI NIH HHS/United States R01 CA068578/CA/NCI NIH HHS/United States R01 CA072818/CA/NCI NIH HHS/United States R01 CA082664/CA/NCI NIH HHS/United States R01 CA092579/CA/NCI NIH HHS/United States R01 CA128813/CA/NCI NIH HHS/United States R01 CA128978/CA/NCI NIH HHS/United States R01 CA136924/CA/NCI NIH HHS/United States R01 ES011126/ES/NIEHS NIH HHS/United States R37 CA054281/CA/NCI NIH HHS/United States RC2 CA148085/CA/NCI NIH HHS/United States U01 CA063464/CA/NCI NIH HHS/United States U01 CA089600/CA/NCI NIH HHS/United States U01 CA098233/CA/NCI NIH HHS/United States U01 CA098758/CA/NCI NIH HHS/United States U01 CA127298/CA/NCI NIH HHS/United States U01 CA136792/CA/NCI NIH HHS/United States U01 HG004446/HG/NHGRI NIH HHS/United States U01 HG004726/HG/NHGRI NIH HHS/United States U19 CA148112/CA/NCI NIH HHS/United States U19 CA148537/CA/NCI NIH HHS/United States United States Nature genetics Nat Genet. 2014 Oct;46(10):1103-9. doi: 10.1038/ng.3094. Epub 2014 Sep 14.
PY - 2014/9/14
Y1 - 2014/9/14
N2 - Genome-wide association studies (GWAS) have identified 76 variants associated with prostate cancer risk predominantly in populations of European ancestry. To identify additional susceptibility loci for this common cancer, we conducted a meta-analysis of >10 million SNPs in 43,303 prostate cancer cases and 43,737 controls from studies in populations of European, African, Japanese and Latino ancestry. Twenty-three new susceptibility loci were identified at association P <5 x 10(-8); 15 variants were identified among men of European ancestry, 7 were identified in multi-ancestry analyses and 1 was associated with early-onset prostate cancer. These 23 variants, in combination with known prostate cancer risk variants, explain 33% of the familial risk for this disease in European-ancestry populations. These findings provide new regions for investigation into the pathogenesis of prostate cancer and demonstrate the usefulness of combining ancestrally diverse populations to discover risk loci for disease.
AB - Genome-wide association studies (GWAS) have identified 76 variants associated with prostate cancer risk predominantly in populations of European ancestry. To identify additional susceptibility loci for this common cancer, we conducted a meta-analysis of >10 million SNPs in 43,303 prostate cancer cases and 43,737 controls from studies in populations of European, African, Japanese and Latino ancestry. Twenty-three new susceptibility loci were identified at association P <5 x 10(-8); 15 variants were identified among men of European ancestry, 7 were identified in multi-ancestry analyses and 1 was associated with early-onset prostate cancer. These 23 variants, in combination with known prostate cancer risk variants, explain 33% of the familial risk for this disease in European-ancestry populations. These findings provide new regions for investigation into the pathogenesis of prostate cancer and demonstrate the usefulness of combining ancestrally diverse populations to discover risk loci for disease.
U2 - 10.1038/ng.3094
DO - 10.1038/ng.3094
M3 - Article
SN - 1546-1718
VL - 46
SP - 1103
EP - 1109
JO - Nat Genet
JF - Nat Genet
IS - 10
ER -