Literature DB >> 21750962

Further evidence for the contribution of the RAD51C gene in hereditary breast and ovarian cancer susceptibility.

Mikko Vuorela1, Katri Pylkäs, Jaana M Hartikainen, Karin Sundfeldt, Annika Lindblom, Anna von Wachenfeldt Wäppling, Maria Haanpää, Ulla Puistola, Annika Rosengren, Maarit Anttila, Veli-Matti Kosma, Arto Mannermaa, Robert Winqvist.   

Abstract

RAD51C, a RAD51 paralogue involved in homologous recombination, is a recently established Fanconi anemia and breast cancer predisposing factor. In the initial report, RAD51C mutations were shown to confer a high risk for both breast and ovarian tumors, but most of the replication studies published so far have failed to identify any additional susceptibility alleles. Here, we report a full mutation screening of the RAD51C gene in 147 Finnish familial breast cancer cases and in 232 unselected ovarian cancer cases originating from Finland and Sweden. In addition, in order to resolve whether common RAD51C SNPs are risk factors for breast cancer, we genotyped five tagging single nucleotide polymorphisms, rs12946522, rs304270, rs304283, rs17222691, and rs28363312, all located within the gene, from 993 Finnish breast cancer cases and 871 controls for cancer associated variants. Whereas, none of the studied common SNPs associated with breast cancer susceptibility, mutation analysis revealed two clearly pathogenic alterations. RAD51C c.-13_14del27 was observed in one familial breast cancer case and c.774delT in one unselected ovarian cancer case, thus confirming that RAD51C mutations are implicated in breast and ovarian cancer predisposition, although their overall frequency seems to be low. Independent identification of the very recently reported RAD51C c.774delT mutation in yet another patient originating from Sweden suggests that it might be a recurrent mutation in that population and should be studied further. The reliable estimation of the clinical implications of carrying a defective RAD51C allele still requires the identification of additional mutation positive families.

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Year:  2011        PMID: 21750962     DOI: 10.1007/s10549-011-1677-x

Source DB:  PubMed          Journal:  Breast Cancer Res Treat        ISSN: 0167-6806            Impact factor:   4.872


  24 in total

1.  Mutation screening of RAD51C in high-risk breast and ovarian cancer families.

Authors:  Wenping Lu; Xianshu Wang; Hongsheng Lin; Noralane M Lindor; Fergus J Couch
Journal:  Fam Cancer       Date:  2012-09       Impact factor: 2.375

2.  An increased risk of ovarian cancer associated with polymorphism in BRCC5 gene in Caucasian populations.

Authors:  Hua Liang; Yan Li; Ruo-Yu Luo; Fu-Jin Shen
Journal:  Tumour Biol       Date:  2014-06-14

3.  Contribution of germline deleterious variants in the RAD51 paralogs to breast and ovarian cancers.

Authors:  Lisa Golmard; Laurent Castéra; Sophie Krieger; Virginie Moncoutier; Khadija Abidallah; Henrique Tenreiro; Anthony Laugé; Julien Tarabeux; Gael A Millot; André Nicolas; Marick Laé; Caroline Abadie; Pascaline Berthet; Florence Polycarpe; Thierry Frébourg; Camille Elan; Antoine de Pauw; Marion Gauthier-Villars; Bruno Buecher; Marc-Henri Stern; Dominique Stoppa-Lyonnet; Dominique Vaur; Claude Houdayer
Journal:  Eur J Hum Genet       Date:  2017-11-08       Impact factor: 4.246

4.  Estrogen induces RAD51C expression and localization to sites of DNA damage.

Authors:  Anya Alayev; Rachel S Salamon; Subrata Manna; Naomi S Schwartz; Adi Y Berman; Marina K Holz
Journal:  Cell Cycle       Date:  2016-10-18       Impact factor: 4.534

Review 5.  PALB2: the hub of a network of tumor suppressors involved in DNA damage responses.

Authors:  Jung-Young Park; Fan Zhang; Paul R Andreassen
Journal:  Biochim Biophys Acta       Date:  2014-07-03

6.  Ovarian cancer patients at high risk of BRCA mutation: the constitutional genetic characterization does not change prognosis.

Authors:  Renaud Sabatier; Elise Lavit; Jessica Moretta; Eric Lambaudie; Tetsuro Noguchi; François Eisinger; Elisabeth Cherau; Magali Provansal; Doriane Livon; Laetitia Rabayrol; Cornel Popovici; Emmanuelle Charaffe-Jauffret; Hagay Sobol; Patrice Viens
Journal:  Fam Cancer       Date:  2016-10       Impact factor: 2.375

7.  Germline RAD51C mutations confer susceptibility to ovarian cancer.

Authors:  Chey Loveday; Clare Turnbull; Elise Ruark; Rosa Maria Munoz Xicola; Emma Ramsay; Deborah Hughes; Margaret Warren-Perry; Katie Snape; Diana Eccles; D Gareth Evans; Martin Gore; Anthony Renwick; Sheila Seal; Antonis C Antoniou; Nazneen Rahman
Journal:  Nat Genet       Date:  2012-04-26       Impact factor: 38.330

8.  Screening of Finnish RAD51C founder mutations in prostate and colorectal cancer patients.

Authors:  Liisa M Pelttari; Riikka Nurminen; Alexandra Gylfe; Lauri A Aaltonen; Johanna Schleutker; Heli Nevanlinna
Journal:  BMC Cancer       Date:  2012-11-23       Impact factor: 4.430

9.  Genotyping of fanconi anemia patients by whole exome sequencing: advantages and challenges.

Authors:  Kerstin Knies; Beatrice Schuster; Najim Ameziane; Martin Rooimans; Thomas Bettecken; Johan de Winter; Detlev Schindler
Journal:  PLoS One       Date:  2012-12-20       Impact factor: 3.240

10.  Contribution of Germline Mutations in the RAD51B, RAD51C, and RAD51D Genes to Ovarian Cancer in the Population.

Authors:  Honglin Song; Ed Dicks; Susan J Ramus; Jonathan P Tyrer; Maria P Intermaggio; Jane Hayward; Christopher K Edlund; David Conti; Patricia Harrington; Lindsay Fraser; Susan Philpott; Christopher Anderson; Adam Rosenthal; Aleksandra Gentry-Maharaj; David D Bowtell; Kathryn Alsop; Mine S Cicek; Julie M Cunningham; Brooke L Fridley; Jennifer Alsop; Mercedes Jimenez-Linan; Estrid Høgdall; Claus K Høgdall; Allan Jensen; Susanne Krüger Kjaer; Jan Lubiński; Tomasz Huzarski; Anna Jakubowska; Jacek Gronwald; Samantha Poblete; Shashi Lele; Lara Sucheston-Campbell; Kirsten B Moysich; Kunle Odunsi; Ellen L Goode; Usha Menon; Ian J Jacobs; Simon A Gayther; Paul D P Pharoah
Journal:  J Clin Oncol       Date:  2015-08-10       Impact factor: 44.544

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