Germline whole exome sequencing and large-scale replication identifies FANCM as a likely high grade serous ovarian cancer susceptibility gene.
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Authors
Ramus, Susan J
Oudenhove, Elke Van
Tyrer, Jonathan P
Intermaggio, Maria P
Kar, Siddhartha
Harrington, Patricia
Bowtell, David D
Group, Aocs Study
Cicek, Mine S
Cunningham, Julie M
Fridley, Brooke L
Alsop, Jennifer
Jimenez-Linan, Mercedes
Piskorz, Anna
Goranova, Teodora
Kent, Emma
Siddiqui, Nadeem
Paul, James
Crawford, Robin
Poblete, Samantha
Lele, Shashi
Sucheston-Campbell, Lara
Moysich, Kirsten B
Sieh, Weiva
McGuire, Valerie
Lester, Jenny
Odunsi, Kunle
Whittemore, Alice S
Bogdanova, Natalia
Dürst, Matthias
Hillemanns, Peter
Karlan, Beth Y
Gentry-Maharaj, Aleksandra
Menon, Usha
Levine, Douglas
Brenton, James D
Dörk, Thilo
Goode, Ellen L
Gayther, Simon A
Pharoah, DP Paul
Publication Date
2017-08-01Journal Title
Oncotarget
ISSN
1949-2553
Volume
8
Issue
31
Pages
50930-50940
Language
eng
Type
Article
Physical Medium
Electronic-eCollection
Metadata
Show full item recordCitation
Dicks, E., Song, H., Ramus, S. J., Oudenhove, E. V., Tyrer, J. P., Intermaggio, M. P., Kar, S., et al. (2017). Germline whole exome sequencing and large-scale replication identifies FANCM as a likely high grade serous ovarian cancer susceptibility gene.. Oncotarget, 8 (31), 50930-50940. https://doi.org/10.18632/oncotarget.15871
Abstract
We analyzed whole exome sequencing data in germline DNA from 412 high grade serous ovarian cancer (HGSOC) cases from The Cancer Genome Atlas Project and identified 5,517 genes harboring a predicted deleterious germline coding mutation in at least one HGSOC case. Gene-set enrichment analysis showed enrichment for genes involved in DNA repair (p = 1.8×10-3). Twelve DNA repair genes - APEX1, APLF, ATX, EME1, FANCL, FANCM, MAD2L2, PARP2, PARP3, POLN, RAD54L and SMUG1 - were prioritized for targeted sequencing in up to 3,107 HGSOC cases, 1,491 cases of other epithelial ovarian cancer (EOC) subtypes and 3,368 unaffected controls of European origin. We estimated mutation prevalence for each gene and tested for associations with disease risk. Mutations were identified in both cases and controls in all genes except MAD2L2, where we found no evidence of mutations in controls. In FANCM we observed a higher mutation frequency in HGSOC cases compared to controls (29/3,107 cases, 0.96 percent; 13/3,368 controls, 0.38 percent; P=0.008) with little evidence for association with other subtypes (6/1,491, 0.40 percent; P=0.82). The relative risk of HGSOC associated with deleterious FANCM mutations was estimated to be 2.5 (95% CI 1.3 - 5.0; P=0.006). In summary, whole exome sequencing of EOC cases with large-scale replication in case-control studies has identified FANCM as a likely novel susceptibility gene for HGSOC, with mutations associated with a moderate increase in risk. These data may have clinical implications for risk prediction and prevention approaches for high-grade serous ovarian cancer in the future and a significant impact on reducing disease mortality.
Keywords
DNA repair, next generation sequencing, ovarian cancer, susceptibility genes
Sponsorship
Cancer Research Uk (None)
Cancer Research UK (C14303/A17197)
National Cancer Institute (R01CA178535)
Cancer Research UK (CB4150)
Identifiers
External DOI: https://doi.org/10.18632/oncotarget.15871
This record's URL: https://www.repository.cam.ac.uk/handle/1810/280221
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