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SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas

Anaplastic oligodendrogliomas (AOD) are rare glial tumors in adults with relative homogeneous clinical, radiological and histological features at the time of diagnosis but dramatically various clinical courses. Studies have identified several molecular abnormalities with clinical or biological relev...

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Autores principales: Idbaih, Ahmed, Ducray, François, Dehais, Caroline, Courdy, Célia, Carpentier, Catherine, de Bernard, Simon, Uro-Coste, Emmanuelle, Mokhtari, Karima, Jouvet, Anne, Honnorat, Jérôme, Chinot, Olivier, Ramirez, Carole, Beauchesne, Patrick, Benouaich-Amiel, Alexandra, Godard, Joël, Eimer, Sandrine, Parker, Fabrice, Lechapt-Zalcman, Emmanuelle, Colin, Philippe, Loussouarn, Delphine, Faillot, Thierry, Dam-Hieu, Phong, Elouadhani-Hamdi, Selma, Bauchet, Luc, Langlois, Olivier, Le Guerinel, Caroline, Fontaine, Denys, Vauleon, Elodie, Menei, Philippe, Fotso, Marie Janette Motsuo, Desenclos, Christine, Verelle, Pierre, Ghiringhelli, François, Noel, Georges, Labrousse, François, Carpentier, Antoine, Dhermain, Frédéric, Delattre, Jean-Yves, Figarella-Branger, Dominique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3468603/
https://www.ncbi.nlm.nih.gov/pubmed/23071531
http://dx.doi.org/10.1371/journal.pone.0045950
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author Idbaih, Ahmed
Ducray, François
Dehais, Caroline
Courdy, Célia
Carpentier, Catherine
de Bernard, Simon
Uro-Coste, Emmanuelle
Mokhtari, Karima
Jouvet, Anne
Honnorat, Jérôme
Chinot, Olivier
Ramirez, Carole
Beauchesne, Patrick
Benouaich-Amiel, Alexandra
Godard, Joël
Eimer, Sandrine
Parker, Fabrice
Lechapt-Zalcman, Emmanuelle
Colin, Philippe
Loussouarn, Delphine
Faillot, Thierry
Dam-Hieu, Phong
Elouadhani-Hamdi, Selma
Bauchet, Luc
Langlois, Olivier
Le Guerinel, Caroline
Fontaine, Denys
Vauleon, Elodie
Menei, Philippe
Fotso, Marie Janette Motsuo
Desenclos, Christine
Verelle, Pierre
Ghiringhelli, François
Noel, Georges
Labrousse, François
Carpentier, Antoine
Dhermain, Frédéric
Delattre, Jean-Yves
Figarella-Branger, Dominique
author_facet Idbaih, Ahmed
Ducray, François
Dehais, Caroline
Courdy, Célia
Carpentier, Catherine
de Bernard, Simon
Uro-Coste, Emmanuelle
Mokhtari, Karima
Jouvet, Anne
Honnorat, Jérôme
Chinot, Olivier
Ramirez, Carole
Beauchesne, Patrick
Benouaich-Amiel, Alexandra
Godard, Joël
Eimer, Sandrine
Parker, Fabrice
Lechapt-Zalcman, Emmanuelle
Colin, Philippe
Loussouarn, Delphine
Faillot, Thierry
Dam-Hieu, Phong
Elouadhani-Hamdi, Selma
Bauchet, Luc
Langlois, Olivier
Le Guerinel, Caroline
Fontaine, Denys
Vauleon, Elodie
Menei, Philippe
Fotso, Marie Janette Motsuo
Desenclos, Christine
Verelle, Pierre
Ghiringhelli, François
Noel, Georges
Labrousse, François
Carpentier, Antoine
Dhermain, Frédéric
Delattre, Jean-Yves
Figarella-Branger, Dominique
author_sort Idbaih, Ahmed
collection PubMed
description Anaplastic oligodendrogliomas (AOD) are rare glial tumors in adults with relative homogeneous clinical, radiological and histological features at the time of diagnosis but dramatically various clinical courses. Studies have identified several molecular abnormalities with clinical or biological relevance to AOD (e.g. t(1;19)(q10;p10), IDH1, IDH2, CIC and FUBP1 mutations). To better characterize the clinical and biological behavior of this tumor type, the creation of a national multicentric network, named “Prise en charge des OLigodendrogliomes Anaplasiques (POLA),” has been supported by the Institut National du Cancer (InCA). Newly diagnosed and centrally validated AOD patients and their related biological material (tumor and blood samples) were prospectively included in the POLA clinical database and tissue bank, respectively. At the molecular level, we have conducted a high-resolution single nucleotide polymorphism array analysis, which included 83 patients. Despite a careful central pathological review, AOD have been found to exhibit heterogeneous genomic features. A total of 82% of the tumors exhibited a 1p/19q-co-deletion, while 18% harbor a distinct chromosome pattern. Novel focal abnormalities, including homozygously deleted, amplified and disrupted regions, have been identified. Recurring copy neutral losses of heterozygosity (CNLOH) inducing the modulation of gene expression have also been discovered. CNLOH in the CDKN2A locus was associated with protein silencing in 1/3 of the cases. In addition, FUBP1 homozygous deletion was detected in one case suggesting a putative tumor suppressor role of FUBP1 in AOD. Our study showed that the genomic and pathological analyses of AOD are synergistic in detecting relevant clinical and biological subgroups of AOD.
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spelling pubmed-34686032012-10-15 SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas Idbaih, Ahmed Ducray, François Dehais, Caroline Courdy, Célia Carpentier, Catherine de Bernard, Simon Uro-Coste, Emmanuelle Mokhtari, Karima Jouvet, Anne Honnorat, Jérôme Chinot, Olivier Ramirez, Carole Beauchesne, Patrick Benouaich-Amiel, Alexandra Godard, Joël Eimer, Sandrine Parker, Fabrice Lechapt-Zalcman, Emmanuelle Colin, Philippe Loussouarn, Delphine Faillot, Thierry Dam-Hieu, Phong Elouadhani-Hamdi, Selma Bauchet, Luc Langlois, Olivier Le Guerinel, Caroline Fontaine, Denys Vauleon, Elodie Menei, Philippe Fotso, Marie Janette Motsuo Desenclos, Christine Verelle, Pierre Ghiringhelli, François Noel, Georges Labrousse, François Carpentier, Antoine Dhermain, Frédéric Delattre, Jean-Yves Figarella-Branger, Dominique PLoS One Research Article Anaplastic oligodendrogliomas (AOD) are rare glial tumors in adults with relative homogeneous clinical, radiological and histological features at the time of diagnosis but dramatically various clinical courses. Studies have identified several molecular abnormalities with clinical or biological relevance to AOD (e.g. t(1;19)(q10;p10), IDH1, IDH2, CIC and FUBP1 mutations). To better characterize the clinical and biological behavior of this tumor type, the creation of a national multicentric network, named “Prise en charge des OLigodendrogliomes Anaplasiques (POLA),” has been supported by the Institut National du Cancer (InCA). Newly diagnosed and centrally validated AOD patients and their related biological material (tumor and blood samples) were prospectively included in the POLA clinical database and tissue bank, respectively. At the molecular level, we have conducted a high-resolution single nucleotide polymorphism array analysis, which included 83 patients. Despite a careful central pathological review, AOD have been found to exhibit heterogeneous genomic features. A total of 82% of the tumors exhibited a 1p/19q-co-deletion, while 18% harbor a distinct chromosome pattern. Novel focal abnormalities, including homozygously deleted, amplified and disrupted regions, have been identified. Recurring copy neutral losses of heterozygosity (CNLOH) inducing the modulation of gene expression have also been discovered. CNLOH in the CDKN2A locus was associated with protein silencing in 1/3 of the cases. In addition, FUBP1 homozygous deletion was detected in one case suggesting a putative tumor suppressor role of FUBP1 in AOD. Our study showed that the genomic and pathological analyses of AOD are synergistic in detecting relevant clinical and biological subgroups of AOD. Public Library of Science 2012-10-10 /pmc/articles/PMC3468603/ /pubmed/23071531 http://dx.doi.org/10.1371/journal.pone.0045950 Text en © 2012 Idbaih 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
Idbaih, Ahmed
Ducray, François
Dehais, Caroline
Courdy, Célia
Carpentier, Catherine
de Bernard, Simon
Uro-Coste, Emmanuelle
Mokhtari, Karima
Jouvet, Anne
Honnorat, Jérôme
Chinot, Olivier
Ramirez, Carole
Beauchesne, Patrick
Benouaich-Amiel, Alexandra
Godard, Joël
Eimer, Sandrine
Parker, Fabrice
Lechapt-Zalcman, Emmanuelle
Colin, Philippe
Loussouarn, Delphine
Faillot, Thierry
Dam-Hieu, Phong
Elouadhani-Hamdi, Selma
Bauchet, Luc
Langlois, Olivier
Le Guerinel, Caroline
Fontaine, Denys
Vauleon, Elodie
Menei, Philippe
Fotso, Marie Janette Motsuo
Desenclos, Christine
Verelle, Pierre
Ghiringhelli, François
Noel, Georges
Labrousse, François
Carpentier, Antoine
Dhermain, Frédéric
Delattre, Jean-Yves
Figarella-Branger, Dominique
SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas
title SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas
title_full SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas
title_fullStr SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas
title_full_unstemmed SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas
title_short SNP Array Analysis Reveals Novel Genomic Abnormalities Including Copy Neutral Loss of Heterozygosity in Anaplastic Oligodendrogliomas
title_sort snp array analysis reveals novel genomic abnormalities including copy neutral loss of heterozygosity in anaplastic oligodendrogliomas
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3468603/
https://www.ncbi.nlm.nih.gov/pubmed/23071531
http://dx.doi.org/10.1371/journal.pone.0045950
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