TY - JOUR A1 - Dumont, Martine A1 - Weber-Lassalle, Nana A1 - Joly-Beauparlant, Charles A1 - Ernst, Corinna A1 - Droit, Arnaud A1 - Feng, Bing-Jian A1 - Dubois, Stéphane A1 - Collin-Deschesnes, Annie-Claude A1 - Soucy, Penny A1 - Vallée, Maxime A1 - Fournier, Frédéric A1 - Lemaçon, Audrey A1 - Adank, Muriel A. A1 - Allen, Jamie A1 - Altmüller, Janine A1 - Arnold, Norbert A1 - Ausems, Margreet G. E. M. A1 - Berutti, Riccardo A1 - Bolla, Manjeet K. A1 - Bull, Shelley A1 - Carvalho, Sara A1 - Cornelissen, Sten A1 - Dufault, Michael R. A1 - Dunning, Alison M. A1 - Engel, Christoph A1 - Gehrig, Andrea A1 - Geurts-Giele, Willemina R. R. A1 - Gieger, Christian A1 - Green, Jessica A1 - Hackmann, Karl A1 - Helmy, Mohamed A1 - Hentschel, Julia A1 - Hogervorst, Frans B. L. A1 - Hollestelle, Antoinette A1 - Hooning, Maartje J. A1 - Horváth, Judit A1 - Ikram, M. Arfan A1 - Kaulfuß, Silke A1 - Keeman, Renske A1 - Kuang, Da A1 - Luccarini, Craig A1 - Maier, Wolfgang A1 - Martens, John W. M. A1 - Niederacher, Dieter A1 - Nürnberg, Peter A1 - Ott, Claus-Eric A1 - Peters, Annette A1 - Pharoah, Paul D. P. A1 - Ramirez, Alfredo A1 - Ramser, Juliane A1 - Riedel-Heller, Steffi A1 - Schmidt, Gunnar A1 - Shah, Mitul A1 - Scherer, Martin A1 - Stäbler, Antje A1 - Strom, Tim M. A1 - Sutter, Christian A1 - Thiele, Holger A1 - van Asperen, Christi J. A1 - van der Kolk, Lizet A1 - van der Luijt, Rob B. A1 - Volk, Alexander E. A1 - Wagner, Michael A1 - Waisfisz, Quinten A1 - Wang, Qin A1 - Wang-Gohrke, Shan A1 - Weber, Bernhard H. F. A1 - Devilee, Peter A1 - Tavtigian, Sean A1 - Bader, Gary D. A1 - Meindl, Alfons A1 - Goldgar, David E. A1 - Andrulis, Irene L. A1 - Schmutzler, Rita K. A1 - Easton, Douglas F. A1 - Schmidt, Marjanka K. A1 - Hahnen, Eric A1 - Simard, Jacques T1 - Uncovering the contribution of moderate-penetrance susceptibility genes to breast cancer by whole-exome sequencing and targeted enrichment sequencing of candidate genes in women of European ancestry JF - Cancers N2 - Rare variants in at least 10 genes, including BRCA1, BRCA2, PALB2, ATM, and CHEK2, are associated with increased risk of breast cancer; however, these variants, in combination with common variants identified through genome-wide association studies, explain only a fraction of the familial aggregation of the disease. To identify further susceptibility genes, we performed a two-stage whole-exome sequencing study. In the discovery stage, samples from 1528 breast cancer cases enriched for breast cancer susceptibility and 3733 geographically matched unaffected controls were sequenced. Using five different filtering and gene prioritization strategies, 198 genes were selected for further validation. These genes, and a panel of 32 known or suspected breast cancer susceptibility genes, were assessed in a validation set of 6211 cases and 6019 controls for their association with risk of breast cancer overall, and by estrogen receptor (ER) disease subtypes, using gene burden tests applied to loss-of-function and rare missense variants. Twenty genes showed nominal evidence of association (p-value < 0.05) with either overall or subtype-specific breast cancer. Our study had the statistical power to detect susceptibility genes with effect sizes similar to ATM, CHEK2, and PALB2, however, it was underpowered to identify genes in which susceptibility variants are rarer or confer smaller effect sizes. Larger sample sizes would be required in order to identify such genes. KW - breast cancer KW - genetic susceptibility KW - whole-exome sequencing KW - moderate-penetrance genes Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-281768 SN - 2072-6694 VL - 14 IS - 14 ER - TY - JOUR A1 - Rolfes, Muriel A1 - Borde, Julika A1 - Möllenhoff, Kathrin A1 - Kayali, Mohamad A1 - Ernst, Corinna A1 - Gehrig, Andrea A1 - Sutter, Christian A1 - Ramser, Juliane A1 - Niederacher, Dieter A1 - Horváth, Judit A1 - Arnold, Norbert A1 - Meindl, Alfons A1 - Auber, Bernd A1 - Rump, Andreas A1 - Wang-Gohrke, Shan A1 - Ritter, Julia A1 - Hentschel, Julia A1 - Thiele, Holger A1 - Altmüller, Janine A1 - Nürnberg, Peter A1 - Rhiem, Kerstin A1 - Engel, Christoph A1 - Wappenschmidt, Barbara A1 - Schmutzler, Rita K. A1 - Hahnen, Eric A1 - Hauke, Jan T1 - Prevalence of cancer predisposition germline variants in male breast cancer patients: results of the German Consortium for Hereditary Breast and Ovarian Cancer JF - Cancers N2 - Male breast cancer (mBC) is associated with a high prevalence of pathogenic variants (PVs) in the BRCA2 gene; however, data regarding other BC predisposition genes are limited. In this retrospective multicenter study, we investigated the prevalence of PVs in BRCA1/2 and 23 non-BRCA1/2 genes using a sample of 614 patients with mBC, recruited through the centers of the German Consortium for Hereditary Breast and Ovarian Cancer. A high proportion of patients with mBC carried PVs in BRCA2 (23.0%, 142/614) and BRCA1 (4.6%, 28/614). The prevalence of BRCA1/2 PVs was 11.0% in patients with mBC without a family history of breast and/or ovarian cancer. Patients with BRCA1/2 PVs did not show an earlier disease onset than those without. The predominant clinical presentation of tumor phenotypes was estrogen receptor (ER)-positive, progesterone receptor (PR)-positive, and HER2-negative (77.7%); further, 10.2% of the tumors were triple-positive, and 1.2% were triple-negative. No association was found between ER/PR/HER2 status and BRCA1/2 PV occurrence. Comparing the prevalence of protein-truncating variants (PTVs) between patients with mBC and control data (ExAC, n = 27,173) revealed significant associations of PTVs in both BRCA1 and BRCA2 with mBC (BRCA1: OR = 17.04, 95% CI = 10.54–26.82, p < 10\(^{−5}\); BRCA2: OR = 77.71, 95% CI = 58.71–102.33, p < 10\(^{−5}\)). A case-control investigation of 23 non-BRCA1/2 genes in 340 BRCA1/2-negative patients and ExAC controls revealed significant associations of PTVs in CHEK2, PALB2, and ATM with mBC (CHEK2: OR = 3.78, 95% CI = 1.59–7.71, p = 0.002; PALB2: OR = 14.77, 95% CI = 5.02–36.02, p < 10\(^{−5}\); ATM: OR = 3.36, 95% CI = 0.89–8.96, p = 0.04). Overall, our findings support the benefit of multi-gene panel testing in patients with mBC irrespective of their family history, age at disease onset, and tumor phenotype. KW - breast neoplasms KW - male breast cancer KW - breast cancer predisposition genes KW - genetic testing KW - familial breast cancer Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-281758 SN - 2072-6694 VL - 14 IS - 13 ER - TY - JOUR A1 - Weber-Lassalle, Nana A1 - Hauke, Jan A1 - Ramser, Juliane A1 - Richters, Lisa A1 - Groß, Eva A1 - Blümcke, Britta A1 - Gehrig, Andrea A1 - Kahlert, Anne-Karin A1 - Müller, Clemens R. A1 - Hackmann, Karl A1 - Honisch, Ellen A1 - Weber-Lassalle, Konstantin A1 - Niederacher, Dieter A1 - Borde, Julika A1 - Thiele, Holger A1 - Ernst, Corinna A1 - Altmüller, Janine A1 - Neidhardt, Guido A1 - Nürnberg, Peter A1 - Klaschik, Kristina A1 - Schroeder, Christopher A1 - Platzer, Konrad A1 - Volk, Alexander E. A1 - Wang-Gohrke, Shan A1 - Just, Walter A1 - Auber, Bernd A1 - Kubisch, Christian A1 - Schmidt, Gunnar A1 - Horvath, Judit A1 - Wappenschmidt, Barbara A1 - Engel, Christoph A1 - Arnold, Norbert A1 - Dworniczak, Bernd A1 - Rhiem, Kerstin A1 - Meindl, Alfons A1 - Schmutzler, Rita K. A1 - Hahnen, Eric T1 - BRIP1 loss-of-function mutations confer high risk for familial ovarian cancer, but not familial breast cancer JF - Breast Cancer Research N2 - Background Germline mutations in the BRIP1 gene have been described as conferring a moderate risk for ovarian cancer (OC), while the role of BRIP1 in breast cancer (BC) pathogenesis remains controversial. Methods To assess the role of deleterious BRIP1 germline mutations in BC/OC predisposition, 6341 well-characterized index patients with BC, 706 index patients with OC, and 2189 geographically matched female controls were screened for loss-of-function (LoF) mutations and potentially damaging missense variants. All index patients met the inclusion criteria of the German Consortium for Hereditary Breast and Ovarian Cancer for germline testing and tested negative for pathogenic BRCA1/2 variants. Results BRIP1 LoF mutations confer a high OC risk in familial index patients (odds ratio (OR) = 20.97, 95% confidence interval (CI) = 12.02–36.57, P < 0.0001) and in the subgroup of index patients with late-onset OC (OR = 29.91, 95% CI = 14.99–59.66, P < 0.0001). No significant association of BRIP1 LoF mutations with familial BC was observed (OR = 1.81 95% CI = 1.00–3.30, P = 0.0623). In the subgroup of familial BC index patients without a family history of OC there was also no apparent association (OR = 1.42, 95% CI = 0.70–2.90, P = 0.3030). In 1027 familial BC index patients with a family history of OC, the BRIP1 mutation prevalence was significantly higher than that observed in controls (OR = 3.59, 95% CI = 1.43–9.01; P = 0.0168). Based on the negative association between BRIP1 LoF mutations and familial BC in the absence of an OC family history, we conclude that the elevated mutation prevalence in the latter cohort was driven by the occurrence of OC in these families. Compared with controls, predicted damaging rare missense variants were significantly more prevalent in OC (P = 0.0014) but not in BC (P = 0.0693) patients. Conclusions To avoid ambiguous results, studies aimed at assessing the impact of candidate predisposition gene mutations on BC risk might differentiate between BC index patients with an OC family history and those without. In familial cases, we suggest that BRIP1 is a high-risk gene for late-onset OC but not a BC predisposition gene, though minor effects cannot be excluded. KW - breast cancer KW - ovarian cancer KW - BRIP1 gene KW - germline mutations Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-233433 VL - 20 ER - TY - JOUR A1 - Engel, Christoph A1 - Rhiem, Kerstin A1 - Hahnen, Eric A1 - Loibl, Sibylle A1 - Weber, Karsten E. A1 - Seiler, Sabine A1 - Zachariae, Silke A1 - Hauke, Jan A1 - Wappenschmidt, Barbara A1 - Waha, Anke A1 - Blümcke, Britta A1 - Kiechle, Marion A1 - Meindl, Alfons A1 - Niederacher, Dieter A1 - Bartram, Claus R. A1 - Speiser, Dorothee A1 - Schlegelberger, Brigitte A1 - Arnold, Norbert A1 - Wieacker, Peter A1 - Leinert, Elena A1 - Gehrig, Andrea A1 - Briest, Susanne A1 - Kast, Karin A1 - Riess, Olaf A1 - Emons, Günter A1 - Weber, Bernhard H. F. A1 - Engel, Jutta A1 - Schmutzler, Rita K. T1 - Prevalence of pathogenic BRCA1/2 germline mutations among 802 women with unilateral triple-negative breast cancer without family cancer history JF - BMC Cancer N2 - Background There is no international consensus up to which age women with a diagnosis of triple-negative breast cancer (TNBC) and no family history of breast or ovarian cancer should be offered genetic testing for germline BRCA1 and BRCA2 (gBRCA) mutations. Here, we explored the association of age at TNBC diagnosis with the prevalence of pathogenic gBRCA mutations in this patient group. Methods The study comprised 802 women (median age 40 years, range 19-76) with oestrogen receptor, progesterone receptor, and human epidermal growth factor receptor type 2 negative breast cancers, who had no relatives with breast or ovarian cancer. All women were tested for pathogenic gBRCA mutations. Logistic regression analysis was used to explore the association between age at TNBC diagnosis and the presence of a pathogenic gBRCA mutation. Results A total of 127 women with TNBC(15.8%) were gBRCA mutation carriers (BRCA1: n = 118, 14.7%; BRCA2: n = 9, 1. 1%). The mutation prevalence was 32.9% in the age group 20-29 years compared to 6.9% in the age group 60-69 years. Logistic regression analysis revealed a significant increase of mutation frequency with decreasing age at diagnosis (odds ratio 1.87 per 10 year decrease, 95% CI 1.50-2.32, p < 0.001). gBRCA mutation risk was predicted to be > 10% for women diagnosed below approximately 50 years. Conclusions Based on the general understanding that a heterozygous mutation probability of 10% or greater justifies gBRCA mutation screening, women with TNBC diagnosed before the age of 50 years and no familial history of breast and ovarian cancer should be tested for gBRCA mutations. In Germany, this would concern approximately 880 women with newly diagnosed TNBC per year, of whom approximately 150 are expected to be identified as carriers of a pathogenic gBRCA mutation. KW - hereditary breast and ovarian cancer KW - BRCA1 KW - BRCA2 KW - triple-negative breast cancer Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226763 VL - 18 ER - TY - JOUR A1 - Blanco, Ignacio A1 - Kuchenbaecker, Karoline A1 - Cuadras, Daniel A1 - Wang, Xianshu A1 - Barrowdale, Daniel A1 - Ruiz de Garibay, Gorka A1 - Librado, Pablo A1 - Sanchez-Gracia, Alejandro A1 - Rozas, Julio A1 - Bonifaci, Núria A1 - McGuffog, Lesley A1 - Pankratz, Vernon S. A1 - Islam, Abul A1 - Mateo, Francesca A1 - Berenguer, Antoni A1 - Petit, Anna A1 - Català, Isabel A1 - Brunet, Joan A1 - Feliubadaló, Lidia A1 - Tornero, Eva A1 - Benítez, Javier A1 - Osorio, Ana A1 - Ramón y Cajal, Teresa A1 - Nevanlinna, Heli A1 - Aittomäki, Kristina A1 - Arun, Banu K. A1 - Toland, Amanda E. A1 - Karlan, Beth Y. A1 - Walsh, Christine A1 - Lester, Jenny A1 - Greene, Mark H. A1 - Mai, Phuong L. A1 - Nussbaum, Robert L. A1 - Andrulis, Irene L. A1 - Domchek, Susan M. A1 - Nathanson, Katherine L. A1 - Rebbeck, Timothy R. A1 - Barkardottir, Rosa B. A1 - Jakubowska, Anna A1 - Lubinski, Jan A1 - Durda, Katarzyna A1 - Jaworska-Bieniek, Katarzyna A1 - Claes, Kathleen A1 - Van Maerken, Tom A1 - Díez, Orland A1 - Hansen, Thomas V. A1 - Jønson, Lars A1 - Gerdes, Anne-Marie A1 - Ejlertsen, Bent A1 - De la Hoya, Miguel A1 - Caldés, Trinidad A1 - Dunning, Alison M. A1 - Oliver, Clare A1 - Fineberg, Elena A1 - Cook, Margaret A1 - Peock, Susan A1 - McCann, Emma A1 - Murray, Alex A1 - Jacobs, Chris A1 - Pichert, Gabriella A1 - Lalloo, Fiona A1 - Chu, Carol A1 - Dorkins, Huw A1 - Paterson, Joan A1 - Ong, Kai-Ren A1 - Teixeira, Manuel R. A1 - Hogervorst, Frans B. L. A1 - Van der Hout, Annemarie H. A1 - Seynaeve, Caroline A1 - Van der Luijt, Rob B. A1 - Ligtenberg, Marjolijn J. L. A1 - Devilee, Peter A1 - Wijnen, Juul T. A1 - Rookus, Matti A. A1 - Meijers-Heijboer, Hanne E. J. A1 - Blok, Marinus J. A1 - Van den Ouweland, Ans M. W. A1 - Aalfs, Cora M. A1 - Rodriguez, Gustavo C. A1 - Phillips, Kelly-Anne A. A1 - Piedmonte, Marion A1 - Nerenstone, Stacy R. A1 - Bae-Jump, Victoria L. A1 - O'Malley, David M. A1 - Schmutzler, Rita K. A1 - Wappenschmidt, Barbara A1 - Rhiem, Kerstin A1 - Engel, Christoph A1 - Meindl, Alfons A1 - Ditsch, Nina A1 - Arnold, Norbert A1 - Plendl, Hansjoerg J. A1 - Niederacher, Dieter A1 - Sutter, Christian A1 - Wang-Gohrke, Shan A1 - Steinemann, Doris A1 - Preisler-Adams, Sabine A1 - Kast, Karin A1 - Varon-Mateeva, Raymonda A1 - Gehrig, Andrea A1 - Bojesen, Anders A1 - Pedersen, Inge Sokilde A1 - Sunde, Lone A1 - Birk Jensen, Uffe A1 - Thomassen, Mads A1 - Kruse, Torben A. A1 - Foretova, Lenka A1 - Peterlongo, Paolo A1 - Bernard, Loris A1 - Peissel, Bernard A1 - Scuvera, Giulietta A1 - Manoukian, Siranoush A1 - Radice, Paolo A1 - Ottini, Laura A1 - Montagna, Marco A1 - Agata, Simona A1 - Maugard, Christine A1 - Simard, Jacques A1 - Soucy, Penny A1 - Berger, Andreas A1 - Fink-Retter, Anneliese A1 - Singer, Christian F. A1 - Rappaport, Christine A1 - Geschwantler-Kaulich, Daphne A1 - Tea, Muy-Kheng A1 - Pfeiler, Georg A1 - John, Esther M. A1 - Miron, Alex A1 - Neuhausen, Susan L. A1 - Terry, Mary Beth A1 - Chung, Wendy K. A1 - Daly, Mary B. A1 - Goldgar, David E. A1 - Janavicius, Ramunas A1 - Dorfling, Cecilia M. A1 - Van Rensburg, Elisabeth J. A1 - Fostira, Florentia A1 - Konstantopoulou, Irene A1 - Garber, Judy A1 - Godwin, Andrew K. A1 - Olah, Edith A1 - Narod, Steven A. A1 - Rennert, Gad A1 - Paluch, Shani Shimon A1 - Laitman, Yael A1 - Friedman, Eitan A1 - Liljegren, Annelie A1 - Rantala, Johanna A1 - Stenmark-Askmalm, Marie A1 - Loman, Niklas A1 - Imyanitov, Evgeny N. A1 - Hamann, Ute A1 - Spurdle, Amanda B. A1 - Healey, Sue A1 - Weitzel, Jeffrey N. A1 - Herzog, Josef A1 - Margileth, David A1 - Gorrini, Chiara A1 - Esteller, Manel A1 - Gómez, Antonio A1 - Sayols, Sergi A1 - Vidal, Enrique A1 - Heyn, Holger A1 - Stoppa-Lyonnet, Dominique A1 - Léoné, Melanie A1 - Barjhoux, Laure A1 - Fassy-Colcombet, Marion A1 - Pauw, Antoine de A1 - Lasset, Christine A1 - Fert Ferrer, Sandra A1 - Castera, Laurent A1 - Berthet, Pascaline A1 - Cornelis, François A1 - Bignon, Yves-Jean A1 - Damiola, Francesca A1 - Mazoyer, Sylvie A1 - Sinilnikova, Olga M. A1 - Maxwell, Christopher A. A1 - Vijai, Joseph A1 - Robson, Mark A1 - Kauff, Noah A1 - Corines, Marina J. A1 - Villano, Danylko A1 - Cunningham, Julie A1 - Lee, Adam A1 - Lindor, Noralane A1 - Lázaro, Conxi A1 - Easton, Douglas F. A1 - Offit, Kenneth A1 - Chenevix-Trench, Georgia A1 - Couch, Fergus J. A1 - Antoniou, Antonis C. A1 - Pujana, Miguel Angel T1 - Assessing associations between the AURKA-HMMR-TPX2-TUBG1 functional module and breast cancer risk in BRCA1/2 mutation carriers JF - PLoS ONE N2 - While interplay between BRCA1 and AURKA-RHAMM-TPX2-TUBG1 regulates mammary epithelial polarization, common genetic variation in HMMR (gene product RHAMM) may be associated with risk of breast cancer in BRCA1 mutation carriers. Following on these observations, we further assessed the link between the AURKA-HMMR-TPX2-TUBG1 functional module and risk of breast cancer in BRCA1 or BRCA2 mutation carriers. Forty-one single nucleotide polymorphisms (SNPs) were genotyped in 15,252 BRCA1 and 8,211 BRCA2 mutation carriers and subsequently analyzed using a retrospective likelihood approach. The association of HMMR rs299290 with breast cancer risk in BRCA1 mutation carriers was confirmed: per-allele hazard ratio (HR) = 1.10, 95% confidence interval (CI) 1.04 - 1.15, p = 1.9 x 10\(^{-4}\) (false discovery rate (FDR)-adjusted p = 0.043). Variation in CSTF1, located next to AURKA, was also found to be associated with breast cancer risk in BRCA2 mutation carriers: rs2426618 per-allele HR = 1.10, 95% CI 1.03 - 1.16, p = 0.005 (FDR-adjusted p = 0.045). Assessment of pairwise interactions provided suggestions (FDR-adjusted p\(_{interaction}\) values > 0.05) for deviations from the multiplicative model for rs299290 and CSTF1 rs6064391, and rs299290 and TUBG1 rs11649877 in both BRCA1 and BRCA2 mutation carriers. Following these suggestions, the expression of HMMR and AURKA or TUBG1 in sporadic breast tumors was found to potentially interact, influencing patients' survival. Together, the results of this study support the hypothesis of a causative link between altered function of AURKA-HMMR-TPX2-TUBG1 and breast carcinogenesis in BRCA1/2 mutation carriers. KW - genetic interaction networks KW - genome-wide association KW - expression signature KW - susceptibility loci KW - survival KW - modifiers KW - polymorphism KW - cell KW - chip-seq KW - elements Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143469 VL - 10 IS - 4 ER - TY - JOUR A1 - Rhiem, Kerstin A1 - Engel, Christoph A1 - Graeser, Monika A1 - Zachariae, Silke A1 - Kast, Karin A1 - Kiechle, Marion A1 - Ditsch, Nina A1 - Janni, Wolfgang A1 - Mundhenke, Christoph A1 - Golatta, Michael A1 - Varga, Dominic A1 - Preisler-Adams, Sabine A1 - Heinrich, Tilman A1 - Bick, Ulrich A1 - Gadzicki, Dorothea A1 - Briest, Susanne A1 - Meindl, Alfons A1 - Schmutzler, Rita K. T1 - The risk of contralateral breast cancer in patients from BRCA1/2 negative high risk families as compared to patients from BRCA1 or BRCA2 positive families: a retrospective cohort study JF - Breast Cancer Research N2 - Introduction: While it has been reported that the risk of contralateral breast cancer in patients from BRCA1 or BRCA2 positive families is elevated, little is known about contralateral breast cancer risk in patients from high risk families that tested negative for BRCA1/2 mutations. Methods: A retrospective, multicenter cohort study was performed from 1996 to 2011 and comprised 6,235 women with unilateral breast cancer from 6,230 high risk families that had tested positive for BRCA1 (n = 1,154) or BRCA2 (n = 575) mutations or tested negative (n = 4,501). Cumulative contralateral breast cancer risks were calculated using the Kaplan-Meier product-limit method and were compared between groups using the log-rank test. Cox regression analysis was applied to assess the impact of the age at first breast cancer and the familial history stratified by mutation status. Results: The cumulative risk of contralateral breast cancer 25 years after first breast cancer was 44.1% (95%CI, 37.6% to 50.6%) for patients from BRCA1 positive families, 33.5% (95%CI, 22.4% to 44.7%) for patients from BRCA2 positive families and 17.2% (95%CI, 14.5% to 19.9%) for patients from families that tested negative for BRCA1/2 mutations. Younger age at first breast cancer was associated with a higher risk of contralateral breast cancer. For women who had their first breast cancer before the age of 40 years, the cumulative risk of contralateral breast cancer after 25 years was 55.1% for BRCA1, 38.4% for BRCA2, and 28.4% for patients from BRCA1/2 negative families. If the first breast cancer was diagnosed at the age of 50 or later, 25-year cumulative risks were 21.6% for BRCA1, 15.5% for BRCA2, and 12.9% for BRCA1/2 negative families. Conclusions: Contralateral breast cancer risk in patients from high risk families that tested negative for BRCA1/2 mutations is similar to the risk in patients with sporadic breast cancer. Thus, the mutation status should guide decision making for contralateral mastectomy. KW - contralateral breast cancer KW - BRCA1/2 negative KW - BRCA1 positive KW - BRCA2 positive Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-135715 VL - 14 IS - 6 ER - TY - JOUR A1 - Blein, Sophie A1 - Bardel, Claire A1 - Danjean, Vincent A1 - McGuffog, Lesley A1 - Healay, Sue A1 - Barrowdale, Daniel A1 - Lee, Andrew A1 - Dennis, Joe A1 - Kuchenbaecker, Karoline B. A1 - Soucy, Penny A1 - Terry, Mary Beth A1 - Chung, Wendy K. A1 - Goldgar, David E. A1 - Buys, Saundra S. A1 - Janavicius, Ramunas A1 - Tihomirova, Laima A1 - Tung, Nadine A1 - Dorfling, Cecilia M. A1 - van Rensburg, Elizabeth J. A1 - Neuhausen, Susan L. A1 - Ding, Yuan Chun A1 - Gerdes, Anne-Marie A1 - Ejlertsen, Bent A1 - Nielsen, Finn C. A1 - Hansen, Thomas V. O. A1 - Osorio, Ana A1 - Benitez, Javier A1 - Andreas Conejero, Raquel A1 - Segota, Ena A1 - Weitzel, Jeffrey N. A1 - Thelander, Margo A1 - Peterlongo, Paolo A1 - Radice, Paolo A1 - Pensotti, Valeria A1 - Dolcetti, Riccardo A1 - Bonanni, Bernardo A1 - Peissel, Bernard A1 - Zaffaroni, Daniela A1 - Scuvera, Giulietta A1 - Manoukian, Siranoush A1 - Varesco, Liliana A1 - Capone, Gabriele L. A1 - Papi, Laura A1 - Ottini, Laura A1 - Yannoukakos, Drakoulis A1 - Konstantopoulou, Irene A1 - Garber, Judy A1 - Hamann, Ute A1 - Donaldson, Alan A1 - Brady, Angela A1 - Brewer, Carole A1 - Foo, Claire A1 - Evans, D. Gareth A1 - Frost, Debra A1 - Eccles, Diana A1 - Douglas, Fiona A1 - Cook, Jackie A1 - Adlard, Julian A1 - Barwell, Julian A1 - Walker, Lisa A1 - Izatt, Louise A1 - Side, Lucy E. A1 - Kennedy, M. John A1 - Tischkowitz, Marc A1 - Rogers, Mark T. A1 - Porteous, Mary E. A1 - Morrison, Patrick J. A1 - Platte, Radka A1 - Eeles, Ros A1 - Davidson, Rosemarie A1 - Hodgson, Shirley A1 - Cole, Trevor A1 - Godwin, Andrew K A1 - Isaacs, Claudine A1 - Claes, Kathleen A1 - De Leeneer, Kim A1 - Meindl, Alfons A1 - Gehrig, Andrea A1 - Wappenschmidt, Barbara A1 - Sutter, Christian A1 - Engel, Christoph A1 - Niederacher, Dieter A1 - Steinemann, Doris A1 - Plendl, Hansjoerg A1 - Kast, Karin A1 - Rhiem, Kerstin A1 - Ditsch, Nina A1 - Arnold, Norbert A1 - Varon-Mateeva, Raymonda A1 - Schmutzler, Rita K. A1 - Preisler-Adams, Sabine A1 - Markov, Nadja Bogdanova A1 - Wang-Gohrke, Shan A1 - de Pauw, Antoine A1 - Lefol, Cedrick A1 - Lasset, Christine A1 - Leroux, Dominique A1 - Rouleau, Etienne A1 - Damiola, Francesca A1 - Dreyfus, Helene A1 - Barjhoux, Laure A1 - Golmard, Lisa A1 - Uhrhammer, Nancy A1 - Bonadona, Valerie A1 - Sornin, Valerie A1 - Bignon, Yves-Jean A1 - Carter, Jonathan A1 - Van Le, Linda A1 - Piedmonte, Marion A1 - DiSilvestro, Paul A. A1 - de la Hoya, Miguel A1 - Caldes, Trinidad A1 - Nevanlinna, Heli A1 - Aittomäki, Kristiina A1 - Jager, Agnes A1 - van den Ouweland, Ans M. W. A1 - Kets, Carolien M. A1 - Aalfs, Cora M. A1 - van Leeuwen, Flora E. A1 - Hogervorst, Frans B. L. A1 - Meijers-Heijboer, Hanne E. J. A1 - Oosterwijk, Jan C. A1 - van Roozendaal, Kees E. P. A1 - Rookus, Matti A. A1 - Devilee, Peter A1 - van der Luijt, Rob B. A1 - Olah, Edith A1 - Diez, Orland A1 - Teule, Alex A1 - Lazaro, Conxi A1 - Blanco, Ignacio A1 - Del Valle, Jesus A1 - Jakubowska, Anna A1 - Sukiennicki, Grzegorz A1 - Gronwald, Jacek A1 - Spurdle, Amanda B. A1 - Foulkes, William A1 - Olswold, Curtis A1 - Lindor, Noralene M. A1 - Pankratz, Vernon S. A1 - Szabo, Csilla I. A1 - Lincoln, Anne A1 - Jacobs, Lauren A1 - Corines, Marina A1 - Robson, Mark A1 - Vijai, Joseph A1 - Berger, Andreas A1 - Fink-Retter, Anneliese A1 - Singer, Christian F. A1 - Rappaport, Christine A1 - Geschwantler Kaulich, Daphne A1 - Pfeiler, Georg A1 - Tea, Muy-Kheng A1 - Greene, Mark H. A1 - Mai, Phuong L. A1 - Rennert, Gad A1 - Imyanitov, Evgeny N. A1 - Mulligan, Anna Marie A1 - Glendon, Gord A1 - Andrulis, Irene L. A1 - Tchatchou, Andrine A1 - Toland, Amanda Ewart A1 - Pedersen, Inge Sokilde A1 - Thomassen, Mads A1 - Kruse, Torben A. A1 - Jensen, Uffe Birk A1 - Caligo, Maria A. A1 - Friedman, Eitan A1 - Zidan, Jamal A1 - Laitman, Yael A1 - Lindblom, Annika A1 - Melin, Beatrice A1 - Arver, Brita A1 - Loman, Niklas A1 - Rosenquist, Richard A1 - Olopade, Olufunmilayo I. A1 - Nussbaum, Robert L. A1 - Ramus, Susan J. A1 - Nathanson, Katherine L. A1 - Domchek, Susan M. A1 - Rebbeck, Timothy R. A1 - Arun, Banu K. A1 - Mitchell, Gillian A1 - Karlan, Bethy Y. A1 - Lester, Jenny A1 - Orsulic, Sandra A1 - Stoppa-Lyonnet, Dominique A1 - Thomas, Gilles A1 - Simard, Jacques A1 - Couch, Fergus J. A1 - Offit, Kenenth A1 - Easton, Douglas F. A1 - Chenevix-Trench, Georgia A1 - Antoniou, Antonis C. A1 - Mazoyer, Sylvie A1 - Phelan, Catherine M. A1 - Sinilnikova, Olga M. A1 - Cox, David G. T1 - An original phylogenetic approach identified mitochondrial haplogroup T1a1 as inversely associated with breast cancer risk in BRCA2 mutation carriers JF - Breast Cancer Research N2 - Introduction: Individuals carrying pathogenic mutations in the BRCA1 and BRCA2 genes have a high lifetime risk of breast cancer. BRCA1 and BRCA2 are involved in DNA double-strand break repair, DNA alterations that can be caused by exposure to reactive oxygen species, a main source of which are mitochondria. Mitochondrial genome variations affect electron transport chain efficiency and reactive oxygen species production. Individuals with different mitochondrial haplogroups differ in their metabolism and sensitivity to oxidative stress. Variability in mitochondrial genetic background can alter reactive oxygen species production, leading to cancer risk. In the present study, we tested the hypothesis that mitochondrial haplogroups modify breast cancer risk in BRCA1/2 mutation carriers. Methods: We genotyped 22,214 (11,421 affected, 10,793 unaffected) mutation carriers belonging to the Consortium of Investigators of Modifiers of BRCA1/2 for 129 mitochondrial polymorphisms using the iCOGS array. Haplogroup inference and association detection were performed using a phylogenetic approach. ALTree was applied to explore the reference mitochondrial evolutionary tree and detect subclades enriched in affected or unaffected individuals. Results: We discovered that subclade T1a1 was depleted in affected BRCA2 mutation carriers compared with the rest of clade T (hazard ratio (HR) = 0.55; 95% confidence interval (CI), 0.34 to 0.88; P = 0.01). Compared with the most frequent haplogroup in the general population (that is, H and T clades), the T1a1 haplogroup has a HR of 0.62 (95% CI, 0.40 to 0.95; P = 0.03). We also identified three potential susceptibility loci, including G13708A/rs28359178, which has demonstrated an inverse association with familial breast cancer risk. Conclusions: This study illustrates how original approaches such as the phylogeny-based method we used can empower classical molecular epidemiological studies aimed at identifying association or risk modification effects. KW - single-nucleotide polymorphisms KW - genetic modifiers KW - oxidative stress KW - consortium KW - multiple diseases KW - DNA KW - haplogroups KW - susceptibility KW - Ovarian KW - variants Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-145458 VL - 17 IS - 61 ER - TY - JOUR A1 - Antoniou, Antonis C. A1 - Kuchenbaecker, Karoline B. A1 - Soucy, Penny A1 - Beesley, Jonathan A1 - Chen, Xiaoqing A1 - McGuffog, Lesley A1 - Lee, Andrew A1 - Barrowdale, Daniel A1 - Healey, Sue A1 - Sinilnikova, Olga M. A1 - Caligo, Maria A. A1 - Loman, Niklas A1 - Harbst, Katja A1 - Lindblom, Annika A1 - Arver, Brita A1 - Rosenquist, Richard A1 - Karlsson, Per A1 - Nathanson, Kate A1 - Domchek, Susan A1 - Rebbeck, Tim A1 - Jakubowska, Anna A1 - Lubinski, Jan A1 - Jaworska, Katarzyna A1 - Durda, Katarzyna A1 - Zlowowcka-Perłowska, Elżbieta A1 - Osorio, Ana A1 - Durán, Mercedes A1 - Andrés, Raquel A1 - Benítez, Javier A1 - Hamann, Ute A1 - Hogervorst, Frans B. A1 - van Os, Theo A. A1 - Verhoef, Senno A1 - Meijers-Heijboer, Hanne E. J. A1 - Wijnen, Juul A1 - Garcia, Encarna B. Gómez A1 - Ligtenberg, Marjolijn J. A1 - Kriege, Mieke A1 - Collée, Margriet A1 - Ausems, Margreet G. E. M. A1 - Oosterwijk, Jan C. A1 - Peock, Susan A1 - Frost, Debra A1 - Ellis, Steve D. A1 - Platte, Radka A1 - Fineberg, Elena A1 - Evans, D. Gareth A1 - Lalloo, Fiona A1 - Jacobs, Chris A1 - Eeles, Ros A1 - Adlard, Julian A1 - Davidson, Rosemarie A1 - Cole, Trevor A1 - Cook, Jackie A1 - Paterson, Joan A1 - Douglas, Fiona A1 - Brewer, Carole A1 - Hodgson, Shirley A1 - Morrison, Patrick J. A1 - Walker, Lisa A1 - Rogers, Mark T. A1 - Donaldson, Alan A1 - Dorkins, Huw A1 - Godwin, Andrew K. A1 - Bove, Betsy A1 - Stoppa-Lyonnet, Dominique A1 - Houdayer, Claude A1 - Buecher, Bruno A1 - de Pauw, Antoine A1 - Mazoyer, Sylvie A1 - Calender, Alain A1 - Léoné, Mélanie A1 - Bressac-de Paillerets, Brigitte A1 - Caron, Olivier A1 - Sobol, Hagay A1 - Frenay, Marc A1 - Prieur, Fabienne A1 - Ferrer, Sandra Fert A1 - Mortemousque, Isabelle A1 - Buys, Saundra A1 - Daly, Mary A1 - Miron, Alexander A1 - Terry, Mary Beth A1 - Hopper, John L. A1 - John, Esther M. A1 - Southey, Melissa A1 - Goldgar, David A1 - Singer, Christian F. A1 - Fink-Retter, Anneliese A1 - Muy-Kheng, Tea A1 - Geschwantler Kaulich, Daphne A1 - Hansen, Thomas V. O. A1 - Nielsen, Finn C. A1 - Barkardottir, Rosa B. A1 - Gaudet, Mia A1 - Kirchhoff, Tomas A1 - Joseph, Vijai A1 - Dutra-Clarke, Ana A1 - Offit, Kenneth A1 - Piedmonte, Marion A1 - Kirk, Judy A1 - Cohn, David A1 - Hurteau, Jean A1 - Byron, John A1 - Fiorica, James A1 - Toland, Amanda E. A1 - Montagna, Marco A1 - Oliani, Cristina A1 - Imyanitov, Evgeny A1 - Isaacs, Claudine A1 - Tihomirova, Laima A1 - Blanco, Ignacio A1 - Lazaro, Conxi A1 - Teulé, Alex A1 - Del Valle, J. A1 - Gayther, Simon A. A1 - Odunsi, Kunle A1 - Gross, Jenny A1 - Karlan, Beth Y. A1 - Olah, Edith A1 - Teo, Soo-Hwang A1 - Ganz, Patricia A. A1 - Beattie, Mary S. A1 - Dorfling, Cecelia M. A1 - Jansen van Rensburg, Elizabeth A1 - Diez, Orland A1 - Kwong, Ava A1 - Schmutzler, Rita K. A1 - Wappenschmidt, Barbara A1 - Engel, Christoph A1 - Meindl, Alfons A1 - Ditsch, Nina A1 - Arnold, Norbert A1 - Heidemann, Simone A1 - Niederacher, Dieter A1 - Preisler-Adams, Sabine A1 - Gadzicki, Dorothea A1 - Varon-Mateeva, Raymonda A1 - Deissler, Helmut A1 - Gehrig, Andrea A1 - Sutter, Christian A1 - Kast, Karin A1 - Fiebig, Britta A1 - Schäfer, Dieter A1 - Caldes, Trinidad A1 - de la Hoya, Miguel A1 - Nevanlinna, Heli A1 - Muranen, Taru A. A1 - Lespérance, Bernard A1 - Spurdle, Amanda B. A1 - Neuhausen, Susan L. A1 - Ding, Yuan C. A1 - Wang, Xianshu A1 - Fredericksen, Zachary A1 - Pankratz, Vernon S. A1 - Lindor, Noralane M. A1 - Peterlongo, Paulo A1 - Manoukian, Siranoush A1 - Peissel, Bernard A1 - Zaffaroni, Daniela A1 - Bonanni, Bernardo A1 - Bernard, Loris A1 - Dolcetti, Riccardo A1 - Papi, Laura A1 - Ottini, Laura A1 - Radice, Paolo A1 - Greene, Mark H. A1 - Loud, Jennifer T. A1 - Andrulis, Irene L. A1 - Ozcelik, Hilmi A1 - Mulligan, Anna Marie A1 - Glendon, Gord A1 - Thomassen, Mads A1 - Gerdes, Anne-Marie A1 - Jensen, Uffe B. A1 - Skytte, Anne-Bine A1 - Kruse, Torben A. A1 - Chenevix-Trench, Georgia A1 - Couch, Fergus J. A1 - Simard, Jacques A1 - Easton, Douglas F. T1 - Common variants at 12p11, 12q24, 9p21, 9q31.2 and in ZNF365 are associated with breast cancer risk for BRCA1 and/or BRCA2 mutation carriers JF - Breast Cancer Research N2 - Introduction: Several common alleles have been shown to be associated with breast and/or ovarian cancer risk for BRCA1 and BRCA2 mutation carriers. Recent genome-wide association studies of breast cancer have identified eight additional breast cancer susceptibility loci: rs1011970 (9p21, CDKN2A/B), rs10995190 (ZNF365), rs704010 (ZMIZ1), rs2380205 (10p15), rs614367 (11q13), rs1292011 (12q24), rs10771399 (12p11 near PTHLH) and rs865686 (9q31.2). Methods: To evaluate whether these single nucleotide polymorphisms (SNPs) are associated with breast cancer risk for BRCA1 and BRCA2 carriers, we genotyped these SNPs in 12,599 BRCA1 and 7,132 BRCA2 mutation carriers and analysed the associations with breast cancer risk within a retrospective likelihood framework. Results: Only SNP rs10771399 near PTHLH was associated with breast cancer risk for BRCA1 mutation carriers (per-allele hazard ratio (HR) = 0.87, 95% CI: 0.81 to 0.94, P-trend = 3 x 10\(^{-4}\)). The association was restricted to mutations proven or predicted to lead to absence of protein expression (HR = 0.82, 95% CI: 0.74 to 0.90, P-trend = 3.1 x 10\(^{-5}\), P-difference = 0.03). Four SNPs were associated with the risk of breast cancer for BRCA2 mutation carriers: rs10995190, P-trend = 0.015; rs1011970, P-trend = 0.048; rs865686, 2df P = 0.007; rs1292011 2df P = 0.03. rs10771399 (PTHLH) was predominantly associated with estrogen receptor (ER)-negative breast cancer for BRCA1 mutation carriers (HR = 0.81, 95% CI: 0.74 to 0.90, P-trend = 4 x 10\(^{-5}\)) and there was marginal evidence of association with ER- negative breast cancer for BRCA2 mutation carriers (HR = 0.78, 95% CI: 0.62 to 1.00, P-trend = 0.049). Conclusions: The present findings, in combination with previously identified modifiers of risk, will ultimately lead to more accurate risk prediction and an improved understanding of the disease etiology in BRCA1 and BRCA2 mutation carriers. KW - investigators KW - genetic modifiers KW - mammographic density KW - susceptibility loci KW - ovarian cancer KW - hormone-related protein KW - genome-wide association KW - tumor subtypes KW - alleles KW - consortium Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-130449 VL - 14 IS - R33 ER -