TY - JOUR
T1 - Gene and pathway level analyses of germline DNA-repair gene variants and prostate cancer susceptibility using the iCOGS-genotyping array
AU - Saunders, Edward J.
AU - Dadaev, Tokhir
AU - Leongamornlert, Daniel A.
AU - Al Olama, Ali Amin
AU - Benlloch, Sara
AU - Giles, Graham G.
AU - Wiklund, Fredrik
AU - Grönberg, Henrik
AU - Haiman, Christopher A.
AU - Schleutker, Johanna
AU - The UK ProtecT Study Collaborators
AU - The PRACTICAL Consortium
AU - The UK Genetic Prostate Cancer Study Collaborators
AU - Nordestgaard, BØrge G.
AU - Travis, Ruth C.
AU - Neal, David
AU - Pasayan, Nora
AU - Khaw, Kay Tee
AU - Stanford, Janet L.
AU - Blot, William J.
AU - Thibodeau, Stephen N.
AU - Maier, Christiane
AU - Kibel, Adam S.
AU - Cybulski, Cezary
AU - Cannon-Albright, Lisa
AU - Brenner, Hermann
AU - Park, Jong Y.
AU - Kaneva, Radka
AU - Batra, Jyotsna
AU - Teixeira, Manuel R.
AU - Pandha, Hardev
AU - Govindasami, Koveela
AU - Muir, Ken
AU - Easton, Douglas F.
AU - Eeles, Rosalind A.
AU - Kote-Jarai, Zsofia
PY - 2016/4/12
Y1 - 2016/4/12
N2 - Background:
Germline mutations within DNA-repair genes are implicated in susceptibility to multiple forms of cancer. For prostate cancer (PrCa), rare mutations in BRCA2 and BRCA1 give rise to moderately elevated risk, whereas two of ∼100 common, low-penetrance PrCa susceptibility variants identified so far by genome-wide association studies implicate RAD51B and RAD23B.
Methods:
Genotype data from the iCOGS array were imputed to the 1000 genomes phase 3 reference panel for 21 780 PrCa cases and 21 727 controls from the Prostate Cancer Association Group to Investigate Cancer Associated Alterations in the Genome (PRACTICAL) consortium. We subsequently performed single variant, gene and pathway-level analyses using 81 303 SNPs within 20 Kb of a panel of 179 DNA-repair genes.
Results:
Single SNP analyses identified only the previously reported association with RAD51B. Gene-level analyses using the SKAT-C test from the SNP-set (Sequence) Kernel Association Test (SKAT) identified a significant association with PrCa for MSH5. Pathway-level analyses suggested a possible role for the translesion synthesis pathway in PrCa risk and Homologous recombination/Fanconi Anaemia pathway for PrCa aggressiveness, even though after adjustment for multiple testing these did not remain significant.
Conclusions:
MSH5 is a novel candidate gene warranting additional follow-up as a prospective PrCa-risk locus. MSH5 has previously been reported as a pleiotropic susceptibility locus for lung, colorectal and serous ovarian cancers.
AB - Background:
Germline mutations within DNA-repair genes are implicated in susceptibility to multiple forms of cancer. For prostate cancer (PrCa), rare mutations in BRCA2 and BRCA1 give rise to moderately elevated risk, whereas two of ∼100 common, low-penetrance PrCa susceptibility variants identified so far by genome-wide association studies implicate RAD51B and RAD23B.
Methods:
Genotype data from the iCOGS array were imputed to the 1000 genomes phase 3 reference panel for 21 780 PrCa cases and 21 727 controls from the Prostate Cancer Association Group to Investigate Cancer Associated Alterations in the Genome (PRACTICAL) consortium. We subsequently performed single variant, gene and pathway-level analyses using 81 303 SNPs within 20 Kb of a panel of 179 DNA-repair genes.
Results:
Single SNP analyses identified only the previously reported association with RAD51B. Gene-level analyses using the SKAT-C test from the SNP-set (Sequence) Kernel Association Test (SKAT) identified a significant association with PrCa for MSH5. Pathway-level analyses suggested a possible role for the translesion synthesis pathway in PrCa risk and Homologous recombination/Fanconi Anaemia pathway for PrCa aggressiveness, even though after adjustment for multiple testing these did not remain significant.
Conclusions:
MSH5 is a novel candidate gene warranting additional follow-up as a prospective PrCa-risk locus. MSH5 has previously been reported as a pleiotropic susceptibility locus for lung, colorectal and serous ovarian cancers.
UR - https://www.scopus.com/pages/publications/84963650435
U2 - 10.1038/bjc.2016.50
DO - 10.1038/bjc.2016.50
M3 - Article
C2 - 26964030
AN - SCOPUS:84963650435
SN - 0007-0920
VL - 114
SP - 945
EP - 952
JO - British Journal of Cancer
JF - British Journal of Cancer
IS - 8
ER -