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Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases

Not all familial ovarian cancer (OC) cases are explained by pathogenic germline variants in known risk genes. A candidate gene approach involving DNA repair pathway genes was applied to identify rare recurring pathogenic variants in familial OC cases not associated with known OC risk genes from a po...

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Autores principales: Alenezi, Wejdan M., Fierheller, Caitlin T., Serruya, Corinne, Revil, Timothée, Oros, Kathleen K., Subramanian, Deepak N., Bruce, Jeffrey, Spiegelman, Dan, Pugh, Trevor, Campbell, Ian G., Mes-Masson, Anne-Marie, Provencher, Diane, Foulkes, William D., Haffaf, Zaki El, Rouleau, Guy, Bouchard, Luigi, Greenwood, Celia M. T., Ragoussis, Jiannis, Tonin, Patricia N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10030840/
https://www.ncbi.nlm.nih.gov/pubmed/36969007
http://dx.doi.org/10.3389/fonc.2023.1111191
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author Alenezi, Wejdan M.
Fierheller, Caitlin T.
Serruya, Corinne
Revil, Timothée
Oros, Kathleen K.
Subramanian, Deepak N.
Bruce, Jeffrey
Spiegelman, Dan
Pugh, Trevor
Campbell, Ian G.
Mes-Masson, Anne-Marie
Provencher, Diane
Foulkes, William D.
Haffaf, Zaki El
Rouleau, Guy
Bouchard, Luigi
Greenwood, Celia M. T.
Ragoussis, Jiannis
Tonin, Patricia N.
author_facet Alenezi, Wejdan M.
Fierheller, Caitlin T.
Serruya, Corinne
Revil, Timothée
Oros, Kathleen K.
Subramanian, Deepak N.
Bruce, Jeffrey
Spiegelman, Dan
Pugh, Trevor
Campbell, Ian G.
Mes-Masson, Anne-Marie
Provencher, Diane
Foulkes, William D.
Haffaf, Zaki El
Rouleau, Guy
Bouchard, Luigi
Greenwood, Celia M. T.
Ragoussis, Jiannis
Tonin, Patricia N.
author_sort Alenezi, Wejdan M.
collection PubMed
description Not all familial ovarian cancer (OC) cases are explained by pathogenic germline variants in known risk genes. A candidate gene approach involving DNA repair pathway genes was applied to identify rare recurring pathogenic variants in familial OC cases not associated with known OC risk genes from a population exhibiting genetic drift. Whole exome sequencing (WES) data of 15 OC cases from 13 families tested negative for pathogenic variants in known OC risk genes were investigated for candidate variants in 468 DNA repair pathway genes. Filtering and prioritization criteria were applied to WES data to select top candidates for further analyses. Candidates were genotyped in ancestry defined study groups of 214 familial and 998 sporadic OC or breast cancer (BC) cases and 1025 population-matched controls and screened for additional carriers in 605 population-matched OC cases. The candidate genes were also analyzed in WES data from 937 familial or sporadic OC cases of diverse ancestries. Top candidate variants in ERCC5, EXO1, FANCC, NEIL1 and NTHL1 were identified in 5/13 (39%) OC families. Collectively, candidate variants were identified in 7/435 (1.6%) sporadic OC cases and 1/566 (0.2%) sporadic BC cases versus 1/1025 (0.1%) controls. Additional carriers were identified in 6/605 (0.9%) OC cases. Tumour DNA from ERCC5, NEIL1 and NTHL1 variant carriers exhibited loss of the wild-type allele. Carriers of various candidate variants in these genes were identified in 31/937 (3.3%) OC cases of diverse ancestries versus 0-0.004% in cancer-free controls. The strategy of applying a candidate gene approach in a population exhibiting genetic drift identified new candidate OC predisposition variants in DNA repair pathway genes.
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spelling pubmed-100308402023-03-23 Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases Alenezi, Wejdan M. Fierheller, Caitlin T. Serruya, Corinne Revil, Timothée Oros, Kathleen K. Subramanian, Deepak N. Bruce, Jeffrey Spiegelman, Dan Pugh, Trevor Campbell, Ian G. Mes-Masson, Anne-Marie Provencher, Diane Foulkes, William D. Haffaf, Zaki El Rouleau, Guy Bouchard, Luigi Greenwood, Celia M. T. Ragoussis, Jiannis Tonin, Patricia N. Front Oncol Oncology Not all familial ovarian cancer (OC) cases are explained by pathogenic germline variants in known risk genes. A candidate gene approach involving DNA repair pathway genes was applied to identify rare recurring pathogenic variants in familial OC cases not associated with known OC risk genes from a population exhibiting genetic drift. Whole exome sequencing (WES) data of 15 OC cases from 13 families tested negative for pathogenic variants in known OC risk genes were investigated for candidate variants in 468 DNA repair pathway genes. Filtering and prioritization criteria were applied to WES data to select top candidates for further analyses. Candidates were genotyped in ancestry defined study groups of 214 familial and 998 sporadic OC or breast cancer (BC) cases and 1025 population-matched controls and screened for additional carriers in 605 population-matched OC cases. The candidate genes were also analyzed in WES data from 937 familial or sporadic OC cases of diverse ancestries. Top candidate variants in ERCC5, EXO1, FANCC, NEIL1 and NTHL1 were identified in 5/13 (39%) OC families. Collectively, candidate variants were identified in 7/435 (1.6%) sporadic OC cases and 1/566 (0.2%) sporadic BC cases versus 1/1025 (0.1%) controls. Additional carriers were identified in 6/605 (0.9%) OC cases. Tumour DNA from ERCC5, NEIL1 and NTHL1 variant carriers exhibited loss of the wild-type allele. Carriers of various candidate variants in these genes were identified in 31/937 (3.3%) OC cases of diverse ancestries versus 0-0.004% in cancer-free controls. The strategy of applying a candidate gene approach in a population exhibiting genetic drift identified new candidate OC predisposition variants in DNA repair pathway genes. Frontiers Media S.A. 2023-03-08 /pmc/articles/PMC10030840/ /pubmed/36969007 http://dx.doi.org/10.3389/fonc.2023.1111191 Text en Copyright © 2023 Alenezi, Fierheller, Serruya, Revil, Oros, Subramanian, Bruce, Spiegelman, Pugh, Campbell, Mes-Masson, Provencher, Foulkes, Haffaf, Rouleau, Bouchard, Greenwood, Ragoussis and Tonin https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Alenezi, Wejdan M.
Fierheller, Caitlin T.
Serruya, Corinne
Revil, Timothée
Oros, Kathleen K.
Subramanian, Deepak N.
Bruce, Jeffrey
Spiegelman, Dan
Pugh, Trevor
Campbell, Ian G.
Mes-Masson, Anne-Marie
Provencher, Diane
Foulkes, William D.
Haffaf, Zaki El
Rouleau, Guy
Bouchard, Luigi
Greenwood, Celia M. T.
Ragoussis, Jiannis
Tonin, Patricia N.
Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
title Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
title_full Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
title_fullStr Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
title_full_unstemmed Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
title_short Genetic analyses of DNA repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
title_sort genetic analyses of dna repair pathway associated genes implicate new candidate cancer predisposing genes in ancestrally defined ovarian cancer cases
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10030840/
https://www.ncbi.nlm.nih.gov/pubmed/36969007
http://dx.doi.org/10.3389/fonc.2023.1111191
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