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Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer

The ERCC4 protein forms a structure-specific endonuclease involved in the DNA damage response. Different cancer syndromes such as a subtype of Xeroderma pigmentosum, XPF, and recently a subtype of Fanconi Anemia, FA-Q, have been attributed to biallelic ERCC4 gene mutations. To investigate whether mo...

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Autores principales: Kohlhase, Sandra, Bogdanova, Natalia V., Schürmann, Peter, Bermisheva, Marina, Khusnutdinova, Elza, Antonenkova, Natalia, Park-Simon, Tjoung-Won, Hillemanns, Peter, Meyer, Andreas, Christiansen, Hans, Schindler, Detlev, Dörk, Thilo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3897449/
https://www.ncbi.nlm.nih.gov/pubmed/24465539
http://dx.doi.org/10.1371/journal.pone.0085334
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author Kohlhase, Sandra
Bogdanova, Natalia V.
Schürmann, Peter
Bermisheva, Marina
Khusnutdinova, Elza
Antonenkova, Natalia
Park-Simon, Tjoung-Won
Hillemanns, Peter
Meyer, Andreas
Christiansen, Hans
Schindler, Detlev
Dörk, Thilo
author_facet Kohlhase, Sandra
Bogdanova, Natalia V.
Schürmann, Peter
Bermisheva, Marina
Khusnutdinova, Elza
Antonenkova, Natalia
Park-Simon, Tjoung-Won
Hillemanns, Peter
Meyer, Andreas
Christiansen, Hans
Schindler, Detlev
Dörk, Thilo
author_sort Kohlhase, Sandra
collection PubMed
description The ERCC4 protein forms a structure-specific endonuclease involved in the DNA damage response. Different cancer syndromes such as a subtype of Xeroderma pigmentosum, XPF, and recently a subtype of Fanconi Anemia, FA-Q, have been attributed to biallelic ERCC4 gene mutations. To investigate whether monoallelic ERCC4 gene defects play some role in the inherited component of breast cancer susceptibility, we sequenced the whole ERCC4 coding region and flanking untranslated portions in a series of 101 Byelorussian and German breast cancer patients selected for familial disease (set 1, n = 63) or for the presence of the rs1800067 risk haplotype (set 2, n = 38). This study confirmed six known and one novel exonic variants, including four missense substitutions but no truncating mutation. Missense substitution p.R415Q (rs1800067), a previously postulated breast cancer susceptibility allele, was subsequently screened for in a total of 3,698 breast cancer cases and 2,868 controls from Germany, Belarus or Russia. The Gln415 allele appeared protective against breast cancer in the German series, with the strongest effect for ductal histology (OR 0.67; 95%CI 0.49; 0.92; p = 0.003), but this association was not confirmed in the other two series, with the combined analysis yielding an overall Mantel-Haenszel OR of 0.94 (95% CI 0.81; 1.08). There was no significant effect of p.R415Q on breast cancer survival in the German patient series. The other three detected ERCC4 missense mutations included two known rare variants as well as a novel substitution, p.E17V, that we identified on a p.R415Q haplotype background. The p.E17V mutation is predicted to be probably damaging but was present in just one heterozygous patient. We conclude that the contribution of ERCC4/FANCQ coding mutations to hereditary breast cancer in Central and Eastern Europe is likely to be small.
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spelling pubmed-38974492014-01-24 Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer Kohlhase, Sandra Bogdanova, Natalia V. Schürmann, Peter Bermisheva, Marina Khusnutdinova, Elza Antonenkova, Natalia Park-Simon, Tjoung-Won Hillemanns, Peter Meyer, Andreas Christiansen, Hans Schindler, Detlev Dörk, Thilo PLoS One Research Article The ERCC4 protein forms a structure-specific endonuclease involved in the DNA damage response. Different cancer syndromes such as a subtype of Xeroderma pigmentosum, XPF, and recently a subtype of Fanconi Anemia, FA-Q, have been attributed to biallelic ERCC4 gene mutations. To investigate whether monoallelic ERCC4 gene defects play some role in the inherited component of breast cancer susceptibility, we sequenced the whole ERCC4 coding region and flanking untranslated portions in a series of 101 Byelorussian and German breast cancer patients selected for familial disease (set 1, n = 63) or for the presence of the rs1800067 risk haplotype (set 2, n = 38). This study confirmed six known and one novel exonic variants, including four missense substitutions but no truncating mutation. Missense substitution p.R415Q (rs1800067), a previously postulated breast cancer susceptibility allele, was subsequently screened for in a total of 3,698 breast cancer cases and 2,868 controls from Germany, Belarus or Russia. The Gln415 allele appeared protective against breast cancer in the German series, with the strongest effect for ductal histology (OR 0.67; 95%CI 0.49; 0.92; p = 0.003), but this association was not confirmed in the other two series, with the combined analysis yielding an overall Mantel-Haenszel OR of 0.94 (95% CI 0.81; 1.08). There was no significant effect of p.R415Q on breast cancer survival in the German patient series. The other three detected ERCC4 missense mutations included two known rare variants as well as a novel substitution, p.E17V, that we identified on a p.R415Q haplotype background. The p.E17V mutation is predicted to be probably damaging but was present in just one heterozygous patient. We conclude that the contribution of ERCC4/FANCQ coding mutations to hereditary breast cancer in Central and Eastern Europe is likely to be small. Public Library of Science 2014-01-21 /pmc/articles/PMC3897449/ /pubmed/24465539 http://dx.doi.org/10.1371/journal.pone.0085334 Text en © 2014 Kohlhase et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kohlhase, Sandra
Bogdanova, Natalia V.
Schürmann, Peter
Bermisheva, Marina
Khusnutdinova, Elza
Antonenkova, Natalia
Park-Simon, Tjoung-Won
Hillemanns, Peter
Meyer, Andreas
Christiansen, Hans
Schindler, Detlev
Dörk, Thilo
Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer
title Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer
title_full Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer
title_fullStr Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer
title_full_unstemmed Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer
title_short Mutation Analysis of the ERCC4/FANCQ Gene in Hereditary Breast Cancer
title_sort mutation analysis of the ercc4/fancq gene in hereditary breast cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3897449/
https://www.ncbi.nlm.nih.gov/pubmed/24465539
http://dx.doi.org/10.1371/journal.pone.0085334
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