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HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS

Replication repair deficiency (RRD) is an important driving mechanism of pediatric high grade glioma (pHGG) occurring predominantly in the context of germline mutations in RRD-associated genes. Although pHGG present specific patterns of DNA methylation corresponding to driving oncogenic processes, m...

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Autores principales: Dodgshun, Andrew, Fukuoka, Kohei, Edwards, Melissa, Bianchi, Vanessa, Sexton-Oates, Alexandra, Larouche, Valerie, Magimairajan, Vanan, Lindhorst, Scott, Yalon, Michal, Mason, Gary, Crooks, Bruce, Constantini, Shlomi, Massimino, Maura, Chiaravalli, Stefano, Ramdas, Jagadeesh, Mason, Warren, Shamvil, Ashraf, Farah, Roula, Van Damme, An, Opocher, Enrico, Hamid, Syed Ahmer, Ziegler, David, Samuel, David, Cole, Kristina A, Tomboc, Patrick, Stearns, Duncan, Thomas, Gregory, Lossos, Alexander, Sullivan, Michael, Hansford, Jordan R, Jones, David, Mackay, Alan, Jones, Chris, Ramaswamy, Vijay, Hawkins, Cynthia, Bouffet, Eric, Tabori, Uri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715189/
http://dx.doi.org/10.1093/neuonc/noaa222.307
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author Dodgshun, Andrew
Fukuoka, Kohei
Edwards, Melissa
Bianchi, Vanessa
Sexton-Oates, Alexandra
Larouche, Valerie
Magimairajan, Vanan
Lindhorst, Scott
Yalon, Michal
Mason, Gary
Crooks, Bruce
Constantini, Shlomi
Massimino, Maura
Chiaravalli, Stefano
Ramdas, Jagadeesh
Mason, Warren
Shamvil, Ashraf
Farah, Roula
Van Damme, An
Opocher, Enrico
Hamid, Syed Ahmer
Ziegler, David
Samuel, David
Cole, Kristina A
Tomboc, Patrick
Stearns, Duncan
Thomas, Gregory
Lossos, Alexander
Sullivan, Michael
Hansford, Jordan R
Jones, David
Mackay, Alan
Jones, Chris
Ramaswamy, Vijay
Hawkins, Cynthia
Bouffet, Eric
Tabori, Uri
author_facet Dodgshun, Andrew
Fukuoka, Kohei
Edwards, Melissa
Bianchi, Vanessa
Sexton-Oates, Alexandra
Larouche, Valerie
Magimairajan, Vanan
Lindhorst, Scott
Yalon, Michal
Mason, Gary
Crooks, Bruce
Constantini, Shlomi
Massimino, Maura
Chiaravalli, Stefano
Ramdas, Jagadeesh
Mason, Warren
Shamvil, Ashraf
Farah, Roula
Van Damme, An
Opocher, Enrico
Hamid, Syed Ahmer
Ziegler, David
Samuel, David
Cole, Kristina A
Tomboc, Patrick
Stearns, Duncan
Thomas, Gregory
Lossos, Alexander
Sullivan, Michael
Hansford, Jordan R
Jones, David
Mackay, Alan
Jones, Chris
Ramaswamy, Vijay
Hawkins, Cynthia
Bouffet, Eric
Tabori, Uri
author_sort Dodgshun, Andrew
collection PubMed
description Replication repair deficiency (RRD) is an important driving mechanism of pediatric high grade glioma (pHGG) occurring predominantly in the context of germline mutations in RRD-associated genes. Although pHGG present specific patterns of DNA methylation corresponding to driving oncogenic processes, methylation patterns have not been well studied in RRD tumors. We analyzed 52 RRD pHGG using either 450k or 850k methylation arrays. These arrays were compared with 234 PHGG driven by other genetic or epigenetic mechanisms and 10 additional pHGG samples known to be hypermutant. RRD pHGG displayed a methylation pattern corresponding to specific secondary mutations such as IDH1 and H3K27M. Strikingly, RRD pHGG lacking these known secondary mutations largely clustered together with a poorly described group previously labelled Wild type-C. Most of the hypermutant tumors clustered in a similar location suggesting undiagnosed RRD may be a driving force for tumors clustering in this location. Analysis of methylation patterns revealed that RRD pHGG displayed a unique CpG Island Demethylator Phenotype in contrast to the Methylator Phenotype described in other cancers. This effect was most concentrated at gene promotors. Prominent demethylation was observed in genes and pathways critical to cellular survival including cell cycle, gene expression, cellular metabolism and cellular organization. These data suggest that methylation profiles may provide diagnostic information for the detection of RRD pHGG. Furthermore, our findings highlight the unique natural selection pressures in these highly dysregulated, hypermutant cancers and provide novel impact of hypermutation and RRD on the cancer epigenome.
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spelling pubmed-77151892020-12-09 HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS Dodgshun, Andrew Fukuoka, Kohei Edwards, Melissa Bianchi, Vanessa Sexton-Oates, Alexandra Larouche, Valerie Magimairajan, Vanan Lindhorst, Scott Yalon, Michal Mason, Gary Crooks, Bruce Constantini, Shlomi Massimino, Maura Chiaravalli, Stefano Ramdas, Jagadeesh Mason, Warren Shamvil, Ashraf Farah, Roula Van Damme, An Opocher, Enrico Hamid, Syed Ahmer Ziegler, David Samuel, David Cole, Kristina A Tomboc, Patrick Stearns, Duncan Thomas, Gregory Lossos, Alexander Sullivan, Michael Hansford, Jordan R Jones, David Mackay, Alan Jones, Chris Ramaswamy, Vijay Hawkins, Cynthia Bouffet, Eric Tabori, Uri Neuro Oncol High Grade Glioma Replication repair deficiency (RRD) is an important driving mechanism of pediatric high grade glioma (pHGG) occurring predominantly in the context of germline mutations in RRD-associated genes. Although pHGG present specific patterns of DNA methylation corresponding to driving oncogenic processes, methylation patterns have not been well studied in RRD tumors. We analyzed 52 RRD pHGG using either 450k or 850k methylation arrays. These arrays were compared with 234 PHGG driven by other genetic or epigenetic mechanisms and 10 additional pHGG samples known to be hypermutant. RRD pHGG displayed a methylation pattern corresponding to specific secondary mutations such as IDH1 and H3K27M. Strikingly, RRD pHGG lacking these known secondary mutations largely clustered together with a poorly described group previously labelled Wild type-C. Most of the hypermutant tumors clustered in a similar location suggesting undiagnosed RRD may be a driving force for tumors clustering in this location. Analysis of methylation patterns revealed that RRD pHGG displayed a unique CpG Island Demethylator Phenotype in contrast to the Methylator Phenotype described in other cancers. This effect was most concentrated at gene promotors. Prominent demethylation was observed in genes and pathways critical to cellular survival including cell cycle, gene expression, cellular metabolism and cellular organization. These data suggest that methylation profiles may provide diagnostic information for the detection of RRD pHGG. Furthermore, our findings highlight the unique natural selection pressures in these highly dysregulated, hypermutant cancers and provide novel impact of hypermutation and RRD on the cancer epigenome. Oxford University Press 2020-12-04 /pmc/articles/PMC7715189/ http://dx.doi.org/10.1093/neuonc/noaa222.307 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of the Society for Neuro-Oncology. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle High Grade Glioma
Dodgshun, Andrew
Fukuoka, Kohei
Edwards, Melissa
Bianchi, Vanessa
Sexton-Oates, Alexandra
Larouche, Valerie
Magimairajan, Vanan
Lindhorst, Scott
Yalon, Michal
Mason, Gary
Crooks, Bruce
Constantini, Shlomi
Massimino, Maura
Chiaravalli, Stefano
Ramdas, Jagadeesh
Mason, Warren
Shamvil, Ashraf
Farah, Roula
Van Damme, An
Opocher, Enrico
Hamid, Syed Ahmer
Ziegler, David
Samuel, David
Cole, Kristina A
Tomboc, Patrick
Stearns, Duncan
Thomas, Gregory
Lossos, Alexander
Sullivan, Michael
Hansford, Jordan R
Jones, David
Mackay, Alan
Jones, Chris
Ramaswamy, Vijay
Hawkins, Cynthia
Bouffet, Eric
Tabori, Uri
HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS
title HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS
title_full HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS
title_fullStr HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS
title_full_unstemmed HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS
title_short HGG-20. DIAGNOSTIC AND BIOLOGICAL ROLE OF METHYLATION PATTERNS IN REPLICATION REPAIR DEFICIENT HIGH GRADE GLIOMAS
title_sort hgg-20. diagnostic and biological role of methylation patterns in replication repair deficient high grade gliomas
topic High Grade Glioma
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7715189/
http://dx.doi.org/10.1093/neuonc/noaa222.307
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