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Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients

Bilaterality of breast cancer is an indicator of constitutional cancer susceptibility; however, the molecular causes underlying this predisposition in the majority of cases is not known. We hypothesize that epigenetic misregulation of cancer-related genes could partially account for this predisposit...

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Autores principales: Flanagan, James M., Munoz-Alegre, Marta, Henderson, Stephen, Tang, Thomas, Sun, Ping, Johnson, Nichola, Fletcher, Olivia, dos Santos Silva, Isabel, Peto, Julian, Boshoff, Chris, Narod, Steven, Petronis, Arturas
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2655767/
https://www.ncbi.nlm.nih.gov/pubmed/19153073
http://dx.doi.org/10.1093/hmg/ddp033
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author Flanagan, James M.
Munoz-Alegre, Marta
Henderson, Stephen
Tang, Thomas
Sun, Ping
Johnson, Nichola
Fletcher, Olivia
dos Santos Silva, Isabel
Peto, Julian
Boshoff, Chris
Narod, Steven
Petronis, Arturas
author_facet Flanagan, James M.
Munoz-Alegre, Marta
Henderson, Stephen
Tang, Thomas
Sun, Ping
Johnson, Nichola
Fletcher, Olivia
dos Santos Silva, Isabel
Peto, Julian
Boshoff, Chris
Narod, Steven
Petronis, Arturas
author_sort Flanagan, James M.
collection PubMed
description Bilaterality of breast cancer is an indicator of constitutional cancer susceptibility; however, the molecular causes underlying this predisposition in the majority of cases is not known. We hypothesize that epigenetic misregulation of cancer-related genes could partially account for this predisposition. We have performed methylation microarray analysis of peripheral blood DNA from 14 women with bilateral breast cancer compared with 14 unaffected matched controls throughout 17 candidate breast cancer susceptibility genes including BRCA1, BRCA2, CHEK2, ATM, ESR1, SFN, CDKN2A, TP53, GSTP1, CDH1, CDH13, HIC1, PGR, SFRP1, MLH1, RARB and HSD17B4. We show that the majority of methylation variability is associated with intragenic repetitive elements. Detailed validation of the tiled region around ATM was performed by bisulphite modification and pyrosequencing of the same samples and in a second set of peripheral blood DNA from 190 bilateral breast cancer patients compared with 190 controls. We show significant hypermethylation of one intragenic repetitive element in breast cancer cases compared with controls (P = 0.0017), with the highest quartile of methylation associated with a 3-fold increased risk of breast cancer (OR 3.20, 95% CI 1.78–5.86, P = 0.000083). Increased methylation of this locus is associated with lower steady-state ATM mRNA level and correlates with age of cancer patients but not controls, suggesting a combined age–phenotype-related association. This research demonstrates the potential for gene-body epigenetic misregulation of ATM and other cancer-related genes in peripheral blood DNA that may be useful as a novel marker to estimate breast cancer risk. Accession numbers: The microarray data and associated .BED and .WIG files can be accessed through Gene Expression Omnibus accession number: GSE14603.
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spelling pubmed-26557672009-04-02 Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients Flanagan, James M. Munoz-Alegre, Marta Henderson, Stephen Tang, Thomas Sun, Ping Johnson, Nichola Fletcher, Olivia dos Santos Silva, Isabel Peto, Julian Boshoff, Chris Narod, Steven Petronis, Arturas Hum Mol Genet Articles Bilaterality of breast cancer is an indicator of constitutional cancer susceptibility; however, the molecular causes underlying this predisposition in the majority of cases is not known. We hypothesize that epigenetic misregulation of cancer-related genes could partially account for this predisposition. We have performed methylation microarray analysis of peripheral blood DNA from 14 women with bilateral breast cancer compared with 14 unaffected matched controls throughout 17 candidate breast cancer susceptibility genes including BRCA1, BRCA2, CHEK2, ATM, ESR1, SFN, CDKN2A, TP53, GSTP1, CDH1, CDH13, HIC1, PGR, SFRP1, MLH1, RARB and HSD17B4. We show that the majority of methylation variability is associated with intragenic repetitive elements. Detailed validation of the tiled region around ATM was performed by bisulphite modification and pyrosequencing of the same samples and in a second set of peripheral blood DNA from 190 bilateral breast cancer patients compared with 190 controls. We show significant hypermethylation of one intragenic repetitive element in breast cancer cases compared with controls (P = 0.0017), with the highest quartile of methylation associated with a 3-fold increased risk of breast cancer (OR 3.20, 95% CI 1.78–5.86, P = 0.000083). Increased methylation of this locus is associated with lower steady-state ATM mRNA level and correlates with age of cancer patients but not controls, suggesting a combined age–phenotype-related association. This research demonstrates the potential for gene-body epigenetic misregulation of ATM and other cancer-related genes in peripheral blood DNA that may be useful as a novel marker to estimate breast cancer risk. Accession numbers: The microarray data and associated .BED and .WIG files can be accessed through Gene Expression Omnibus accession number: GSE14603. Oxford University Press 2009-04-01 2009-01-19 /pmc/articles/PMC2655767/ /pubmed/19153073 http://dx.doi.org/10.1093/hmg/ddp033 Text en © 2009 The Author(s)
spellingShingle Articles
Flanagan, James M.
Munoz-Alegre, Marta
Henderson, Stephen
Tang, Thomas
Sun, Ping
Johnson, Nichola
Fletcher, Olivia
dos Santos Silva, Isabel
Peto, Julian
Boshoff, Chris
Narod, Steven
Petronis, Arturas
Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients
title Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients
title_full Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients
title_fullStr Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients
title_full_unstemmed Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients
title_short Gene-body hypermethylation of ATM in peripheral blood DNA of bilateral breast cancer patients
title_sort gene-body hypermethylation of atm in peripheral blood dna of bilateral breast cancer patients
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2655767/
https://www.ncbi.nlm.nih.gov/pubmed/19153073
http://dx.doi.org/10.1093/hmg/ddp033
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