Skip to main content
Erschienen in: Breast Cancer Research and Treatment 1/2012

01.05.2012 | Brief Report

Evaluation of RAD51C as cancer susceptibility gene in a large breast-ovarian cancer patient population referred for genetic testing

verfasst von: K. De Leeneer, M. Van Bockstal, S. De Brouwer, N. Swietek, P. Schietecatte, N. Sabbaghian, J. Van den Ende, S. Willocx, K. Storm, B. Blaumeiser, C. J. Van Asperen, J. T. Wijnen, K. Leunen, E. Legius, G. Michils, G. Matthijs, M. J. Blok, E. Gomez-Garcia, A. De Paepe, M. Tischkowitz, B. Poppe, K. Claes

Erschienen in: Breast Cancer Research and Treatment | Ausgabe 1/2012

Einloggen, um Zugang zu erhalten

Abstract

Despite extensive analysis of the BRCA1 and BRCA2 genes, germline mutations are detected in <20% of families with a presumed genetic predisposition for breast and ovarian cancer. Recent literature reported RAD51C as a new breast cancer susceptibility gene. In this study, we report the analysis of 410 patients from 351 unrelated pedigrees. All were referred for genetic testing and we selected families with at least one reported case of ovarian cancer in which BRCA1&2 mutations were previously ruled out. We analyzed the coding exons, intron–exons boundaries, and UTRs of RAD51C. Our mutation analysis did not reveal any unequivocal deleterious mutation. In total 12 unique sequence variations were identified of which two were novel. Our study and others suggest a low prevalence of RAD51C mutations with an exception for some founder populations. This observation is in favor of the rare allele hypothesis in the debate over the nature of the genetic contribution to individual susceptibility to breast and ovarian cancer and further genome-wide studies in high risk families are warranted.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat Ferlay J, Parkin DM, Steliarova-Foucher E (2010) Estimates of cancer incidence and mortality in Europe in 2008. Eur J Cancer 46(4):765–781PubMedCrossRef Ferlay J, Parkin DM, Steliarova-Foucher E (2010) Estimates of cancer incidence and mortality in Europe in 2008. Eur J Cancer 46(4):765–781PubMedCrossRef
2.
Zurück zum Zitat O’Donovan PJ, Livingston DM (2010) BRCA1 and BRCA2: breast/ovarian cancer susceptibility gene products and participants in DNA double-strand break repair. Carcinogenesis 31(6):961–967PubMedCrossRef O’Donovan PJ, Livingston DM (2010) BRCA1 and BRCA2: breast/ovarian cancer susceptibility gene products and participants in DNA double-strand break repair. Carcinogenesis 31(6):961–967PubMedCrossRef
3.
Zurück zum Zitat Ahlbom A, Lichtenstein P, Malmstrom H, Feychting M, Hemminki K, Pedersen NL (1997) Cancer in twins: genetic and nongenetic familial risk factors. J Natl Cancer Inst 89(4):287–293PubMedCrossRef Ahlbom A, Lichtenstein P, Malmstrom H, Feychting M, Hemminki K, Pedersen NL (1997) Cancer in twins: genetic and nongenetic familial risk factors. J Natl Cancer Inst 89(4):287–293PubMedCrossRef
4.
Zurück zum Zitat Mack TM, Hamilton AS, Press MF, Diep A, Rappaport EB (2002) Heritable breast cancer in twins. Br J Cancer 87(3):294–300PubMedCrossRef Mack TM, Hamilton AS, Press MF, Diep A, Rappaport EB (2002) Heritable breast cancer in twins. Br J Cancer 87(3):294–300PubMedCrossRef
5.
Zurück zum Zitat Stratton MR, Rahman N (2008) The emerging landscape of breast cancer susceptibility. Nat Genet 40(1):17–22PubMedCrossRef Stratton MR, Rahman N (2008) The emerging landscape of breast cancer susceptibility. Nat Genet 40(1):17–22PubMedCrossRef
6.
Zurück zum Zitat Howlett NG, Taniguchi T, Olson S, Cox B, Waisfisz Q, De Die-Smulders C, Persky N, Grompe M, Joenje H, Pals G et al (2002) Biallelic inactivation of BRCA2 in Fanconi anemia. Science 297(5581):606–609PubMedCrossRef Howlett NG, Taniguchi T, Olson S, Cox B, Waisfisz Q, De Die-Smulders C, Persky N, Grompe M, Joenje H, Pals G et al (2002) Biallelic inactivation of BRCA2 in Fanconi anemia. Science 297(5581):606–609PubMedCrossRef
7.
Zurück zum Zitat Levy-Lahad E (2010) Fanconi anemia and breast cancer susceptibility meet again. Nat Genet 42(5):368–369PubMedCrossRef Levy-Lahad E (2010) Fanconi anemia and breast cancer susceptibility meet again. Nat Genet 42(5):368–369PubMedCrossRef
8.
Zurück zum Zitat Vaz F, Hanenberg H, Schuster B, Barker K, Wiek C, Erven V, Neveling K, Endt D, Kesterton I, Autore F et al (2010) Mutation of the RAD51C gene in a Fanconi anemia-like disorder. Nat Genet 42(5):406–409PubMedCrossRef Vaz F, Hanenberg H, Schuster B, Barker K, Wiek C, Erven V, Neveling K, Endt D, Kesterton I, Autore F et al (2010) Mutation of the RAD51C gene in a Fanconi anemia-like disorder. Nat Genet 42(5):406–409PubMedCrossRef
9.
Zurück zum Zitat Meindl A, Hellebrand H, Wiek C, Erven V, Wappenschmidt B, Niederacher D, Freund M, Lichtner P, Hartmann L, Schaal H et al (2010) Germline mutations in breast and ovarian cancer pedigrees establish RAD51C as a human cancer susceptibility gene. Nat Genet 42(5):410–414PubMedCrossRef Meindl A, Hellebrand H, Wiek C, Erven V, Wappenschmidt B, Niederacher D, Freund M, Lichtner P, Hartmann L, Schaal H et al (2010) Germline mutations in breast and ovarian cancer pedigrees establish RAD51C as a human cancer susceptibility gene. Nat Genet 42(5):410–414PubMedCrossRef
10.
Zurück zum Zitat Loveday C, Turnbull C, Ramsay E, Hughes D, Ruark E, Frankum JR, Bowden G, Kalmyrzaev B, Warren-Perry M, Snape K et al (2011) Germline mutations in RAD51D confer susceptibility to ovarian cancer. Nat Genet 43(9):879–882PubMedCrossRef Loveday C, Turnbull C, Ramsay E, Hughes D, Ruark E, Frankum JR, Bowden G, Kalmyrzaev B, Warren-Perry M, Snape K et al (2011) Germline mutations in RAD51D confer susceptibility to ovarian cancer. Nat Genet 43(9):879–882PubMedCrossRef
11.
Zurück zum Zitat Romero A, Perez-Segura P, Tosar A, Garcia-Saenz JA, Diaz-Rubio E, Caldes T, de la Hoya M (2011) A HRM-based screening method detects RAD51C germ-line deleterious mutations in Spanish breast and ovarian cancer families. Breast Cancer Res Treat 129(3):939–946PubMedCrossRef Romero A, Perez-Segura P, Tosar A, Garcia-Saenz JA, Diaz-Rubio E, Caldes T, de la Hoya M (2011) A HRM-based screening method detects RAD51C germ-line deleterious mutations in Spanish breast and ovarian cancer families. Breast Cancer Res Treat 129(3):939–946PubMedCrossRef
12.
Zurück zum Zitat Thompson ER, Boyle SE, Johnson J, Ryland GL, Sawyer S, Choong DY, Kconfab, Chenevix-Trench G, Trainer AH, Lindeman GJ et al. (2011) Analysis of RAD51C germline mutations in high-risk breast and ovarian cancer families and ovarian cancer patients. Human mutation 12(66):433–43 Thompson ER, Boyle SE, Johnson J, Ryland GL, Sawyer S, Choong DY, Kconfab, Chenevix-Trench G, Trainer AH, Lindeman GJ et al. (2011) Analysis of RAD51C germline mutations in high-risk breast and ovarian cancer families and ovarian cancer patients. Human mutation 12(66):433–43
13.
Zurück zum Zitat Akbari MR, Tonin P, Foulkes WD, Ghadirian P, Tischkowitz M, Narod SA (2010) RAD51C germline mutations in breast and ovarian cancer patients. Breast cancer research BCR 12(4):404PubMedCrossRef Akbari MR, Tonin P, Foulkes WD, Ghadirian P, Tischkowitz M, Narod SA (2010) RAD51C germline mutations in breast and ovarian cancer patients. Breast cancer research BCR 12(4):404PubMedCrossRef
14.
Zurück zum Zitat Zheng Y, Zhang J, Hope K, Niu Q, Huo D, Olopade OI (2010) Screening RAD51C nucleotide alterations in patients with a family history of breast and ovarian cancer. Breast Cancer Res Treat 124(3):857–861PubMedCrossRef Zheng Y, Zhang J, Hope K, Niu Q, Huo D, Olopade OI (2010) Screening RAD51C nucleotide alterations in patients with a family history of breast and ovarian cancer. Breast Cancer Res Treat 124(3):857–861PubMedCrossRef
15.
Zurück zum Zitat Pang Z, Yao L, Zhang J, Ouyang T, Li J, Wang T, Fan Z, Fan T, Lin B, Xie Y (2011) RAD51C germline mutations in Chinese women with familial breast cancer. Breast Cancer Res Treat 129(3):1019–1020PubMedCrossRef Pang Z, Yao L, Zhang J, Ouyang T, Li J, Wang T, Fan Z, Fan T, Lin B, Xie Y (2011) RAD51C germline mutations in Chinese women with familial breast cancer. Breast Cancer Res Treat 129(3):1019–1020PubMedCrossRef
16.
Zurück zum Zitat Pelttari LM, Heikkinen T, Thompson D, Kallioniemi A, Schleutker J, Holli K, Blomqvist C, Aittomaki K, Butzow R, Nevanlinna H (2011) RAD51C is a susceptibility gene for ovarian cancer. Hum Mol Genet 20(16):3278–3288PubMedCrossRef Pelttari LM, Heikkinen T, Thompson D, Kallioniemi A, Schleutker J, Holli K, Blomqvist C, Aittomaki K, Butzow R, Nevanlinna H (2011) RAD51C is a susceptibility gene for ovarian cancer. Hum Mol Genet 20(16):3278–3288PubMedCrossRef
17.
Zurück zum Zitat Silvestri V, Rizzolo P, Falchetti M, Zanna I, Masala G, Palli D, Ottini L (2011) Mutation screening of RAD51C in male breast cancer patients. Breast cancer research BCR 13(1):404PubMed Silvestri V, Rizzolo P, Falchetti M, Zanna I, Masala G, Palli D, Ottini L (2011) Mutation screening of RAD51C in male breast cancer patients. Breast cancer research BCR 13(1):404PubMed
18.
Zurück zum Zitat Vuorela M, Pylkas K, Hartikainen JM, Sundfeldt K, Lindblom A, von Wachenfeldt Wappling A, Haanpaa M, Puistola U, Rosengren A, Anttila M et al (2011) Further evidence for the contribution of the RAD51C gene in hereditary breast and ovarian cancer susceptibility. Breast Cancer Res Treat 130(3):1003–1010PubMedCrossRef Vuorela M, Pylkas K, Hartikainen JM, Sundfeldt K, Lindblom A, von Wachenfeldt Wappling A, Haanpaa M, Puistola U, Rosengren A, Anttila M et al (2011) Further evidence for the contribution of the RAD51C gene in hereditary breast and ovarian cancer susceptibility. Breast Cancer Res Treat 130(3):1003–1010PubMedCrossRef
19.
Zurück zum Zitat Wong MW, Nordfors C, Mossman D, Pecenpetelovska G, Avery-Kiejda KA, Talseth-Palmer B, Bowden NA, Scott RJ (2011) BRIP1, PALB2, and RAD51C mutation analysis reveals their relative importance as genetic susceptibility factors for breast cancer. Breast Cancer Res Treat 127(3):853–859PubMedCrossRef Wong MW, Nordfors C, Mossman D, Pecenpetelovska G, Avery-Kiejda KA, Talseth-Palmer B, Bowden NA, Scott RJ (2011) BRIP1, PALB2, and RAD51C mutation analysis reveals their relative importance as genetic susceptibility factors for breast cancer. Breast Cancer Res Treat 127(3):853–859PubMedCrossRef
20.
Zurück zum Zitat Clague J, Wilhoite G, Adamson A, Bailis A, Weitzel JN, Neuhausen SL (2011) RAD51C germline mutations in breast and ovarian cancer cases from high-risk families. PLoS ONE 6(9):e25632PubMedCrossRef Clague J, Wilhoite G, Adamson A, Bailis A, Weitzel JN, Neuhausen SL (2011) RAD51C germline mutations in breast and ovarian cancer cases from high-risk families. PLoS ONE 6(9):e25632PubMedCrossRef
21.
Zurück zum Zitat Walsh T, Casadei S, Lee MK, Pennil CC, Nord AS, Thornton AM, Roeb W, Agnew KJ, Stray SM, Wickramanayake A et al (2011) Mutations in 12 genes for inherited ovarian, fallopian tube, and peritoneal carcinoma identified by massively parallel sequencing. Proc Nat Acad Sci USA 108(44):18032–18037PubMedCrossRef Walsh T, Casadei S, Lee MK, Pennil CC, Nord AS, Thornton AM, Roeb W, Agnew KJ, Stray SM, Wickramanayake A et al (2011) Mutations in 12 genes for inherited ovarian, fallopian tube, and peritoneal carcinoma identified by massively parallel sequencing. Proc Nat Acad Sci USA 108(44):18032–18037PubMedCrossRef
Metadaten
Titel
Evaluation of RAD51C as cancer susceptibility gene in a large breast-ovarian cancer patient population referred for genetic testing
verfasst von
K. De Leeneer
M. Van Bockstal
S. De Brouwer
N. Swietek
P. Schietecatte
N. Sabbaghian
J. Van den Ende
S. Willocx
K. Storm
B. Blaumeiser
C. J. Van Asperen
J. T. Wijnen
K. Leunen
E. Legius
G. Michils
G. Matthijs
M. J. Blok
E. Gomez-Garcia
A. De Paepe
M. Tischkowitz
B. Poppe
K. Claes
Publikationsdatum
01.05.2012
Verlag
Springer US
Erschienen in
Breast Cancer Research and Treatment / Ausgabe 1/2012
Print ISSN: 0167-6806
Elektronische ISSN: 1573-7217
DOI
https://doi.org/10.1007/s10549-012-1998-4

Weitere Artikel der Ausgabe 1/2012

Breast Cancer Research and Treatment 1/2012 Zur Ausgabe

Update Onkologie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.