| Literature DB >> 26424751 |
Kate Lawrenson1, Edwin S Iversen2, Jonathan Tyrer3, Rachel Palmieri Weber4, Patrick Concannon5, Dennis J Hazelett6, Qiyuan Li7, Jeffrey R Marks8, Andrew Berchuck9, Janet M Lee, Katja K H Aben10, Hoda Anton-Culver11, Natalia Antonenkova12, Elisa V Bandera13, Yukie Bean14, Matthias W Beckmann15, Maria Bisogna16, Line Bjorge17, Natalia Bogdanova18, Louise A Brinton19, Angela Brooks-Wilson20, Fiona Bruinsma21, Ralf Butzow22, Ian G Campbell23, Karen Carty24, Jenny Chang-Claude25, Georgia Chenevix-Trench26, Ann Chen27, Zhihua Chen27, Linda S Cook28, Daniel W Cramer29, Julie M Cunningham30, Cezary Cybulski31, Joanna Plisiecka-Halasa32, Joe Dennis33, Ed Dicks33, Jennifer A Doherty34, Thilo Dörk18, Andreas du Bois35, Diana Eccles36, Douglas T Easton33, Robert P Edwards37, Ursula Eilber25, Arif B Ekici38, Peter A Fasching39, Brooke L Fridley40, Yu-Tang Gao41, Aleksandra Gentry-Maharaj42, Graham G Giles43, Rosalind Glasspool24, Ellen L Goode44, Marc T Goodman45, Jacek Gronwald31, Philipp Harter46, Hanis Nazihah Hasmad47, Alexander Hein15, Florian Heitz46, Michelle A T Hildebrandt48, Peter Hillemanns49, Estrid Hogdall50, Claus Hogdall51, Satoyo Hosono52, Anna Jakubowska31, James Paul24, Allan Jensen53, Beth Y Karlan54, Susanne Kruger Kjaer55, Linda E Kelemen56, Melissa Kellar14, Joseph L Kelley57, Lambertus A Kiemeney58, Camilla Krakstad17, Diether Lambrechts59, Sandrina Lambrechts60, Nhu D Le61, Alice W Lee, Rikki Cannioto62, Arto Leminen63, Jenny Lester54, Douglas A Levine16, Dong Liang64, Jolanta Lissowska32, Karen Lu65, Jan Lubinski31, Lene Lundvall51, Leon F A G Massuger66, Keitaro Matsuo67, Valerie McGuire68, John R McLaughlin69, Heli Nevanlinna63, Iain McNeish70, Usha Menon42, Francesmary Modugno71, Kirsten B Moysich62, Steven A Narod72, Lotte Nedergaard73, Roberta B Ness74, Mat Adenan Noor Azmi75, Kunle Odunsi76, Sara H Olson77, Irene Orlow77, Sandra Orsulic54, Celeste L Pearce78, Tanja Pejovic14, Liisa M Pelttari63, Jennifer Permuth-Wey79, Catherine M Phelan79, Malcolm C Pike80, Elizabeth M Poole81, Susan J Ramus, Harvey A Risch82, Barry Rosen83, Mary Anne Rossing84, Joseph H Rothstein68, Anja Rudolph25, Ingo B Runnebaum85, Iwona K Rzepecka31, Helga B Salvesen17, Agnieszka Budzilowska32, Thomas A Sellers79, Xiao-Ou Shu86, Yurii B Shvetsov87, Nadeem Siddiqui88, Weiva Sieh68, Honglin Song3, Melissa C Southey89, Lara Sucheston64, Ingvild L Tangen17, Soo-Hwang Teo90, Kathryn L Terry29, Pamela J Thompson45, Agnieszka Timorek91, Shelley S Tworoger81, Els Van Nieuwenhuysen60, Ignace Vergote60, Robert A Vierkant44, Shan Wang-Gohrke92, Christine Walsh54, Nicolas Wentzensen19, Alice S Whittemore68, Kristine G Wicklund93, Lynne R Wilkens87, Yin-Ling Woo94, Xifeng Wu48, Anna H Wu, Hannah Yang19, Wei Zheng86, Argyrios Ziogas95, Gerhard A Coetzee6, Matthew L Freedman96, Alvaro N A Monteiro97, Joanna Moes-Sosnowska32, Jolanta Kupryjanczyk32, Paul D Pharoah3, Simon A Gayther98, Joellen M Schildkraut99.
Abstract
Genome-wide association studies have identified 20 genomic regions associated with risk of epithelial ovarian cancer (EOC), but many additional risk variants may exist. Here, we evaluated associations between common genetic variants [single nucleotide polymorphisms (SNPs) and indels] in DNA repair genes and EOC risk. We genotyped 2896 common variants at 143 gene loci in DNA samples from 15 397 patients with invasive EOC and controls. We found evidence of associations with EOC risk for variants at FANCA, EXO1, E2F4, E2F2, CREB5 and CHEK2 genes (P ≤ 0.001). The strongest risk association was for CHEK2 SNP rs17507066 with serous EOC (P = 4.74 x 10(-7)). Additional genotyping and imputation of genotypes from the 1000 genomes project identified a slightly more significant association for CHEK2 SNP rs6005807 (r (2) with rs17507066 = 0.84, odds ratio (OR) 1.17, 95% CI 1.11-1.24, P = 1.1×10(-7)). We identified 293 variants in the region with likelihood ratios of less than 1:100 for representing the causal variant. Functional annotation identified 25 candidate SNPs that alter transcription factor binding sites within regulatory elements active in EOC precursor tissues. In The Cancer Genome Atlas dataset, CHEK2 gene expression was significantly higher in primary EOCs compared to normal fallopian tube tissues (P = 3.72×10(-8)). We also identified an association between genotypes of the candidate causal SNP rs12166475 (r (2) = 0.99 with rs6005807) and CHEK2 expression (P = 2.70×10(-8)). These data suggest that common variants at 22q12.1 are associated with risk of serous EOC and CHEK2 as a plausible target susceptibility gene.Entities:
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Year: 2015 PMID: 26424751 PMCID: PMC4635670 DOI: 10.1093/carcin/bgv138
Source DB: PubMed Journal: Carcinogenesis ISSN: 0143-3334 Impact factor: 4.741