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Copy Number Profiling of Brazilian Astrocytomas

Copy number alterations (CNA) are one of the driving mechanisms of glioma tumorigenesis, and are currently used as important biomarkers in the routine setting. Therefore, we performed CNA profiling of 65 astrocytomas of distinct malignant grades (WHO grade I–IV) of Brazilian origin, using array-CGH...

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Autores principales: Bidinotto, Lucas Tadeu, Torrieri, Raul, Mackay, Alan, Almeida, Gisele Caravina, Viana-Pereira, Marta, Cruvinel-Carloni, Adriana, Spina, Maria Luisa, Campanella, Nathalia Cristina, Pereira de Menezes, Weder, Clara, Carlos Afonso, Becker, Aline Paixão, Jones, Chris, Reis, Rui Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938641/
https://www.ncbi.nlm.nih.gov/pubmed/27172220
http://dx.doi.org/10.1534/g3.116.029884
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author Bidinotto, Lucas Tadeu
Torrieri, Raul
Mackay, Alan
Almeida, Gisele Caravina
Viana-Pereira, Marta
Cruvinel-Carloni, Adriana
Spina, Maria Luisa
Campanella, Nathalia Cristina
Pereira de Menezes, Weder
Clara, Carlos Afonso
Becker, Aline Paixão
Jones, Chris
Reis, Rui Manuel
author_facet Bidinotto, Lucas Tadeu
Torrieri, Raul
Mackay, Alan
Almeida, Gisele Caravina
Viana-Pereira, Marta
Cruvinel-Carloni, Adriana
Spina, Maria Luisa
Campanella, Nathalia Cristina
Pereira de Menezes, Weder
Clara, Carlos Afonso
Becker, Aline Paixão
Jones, Chris
Reis, Rui Manuel
author_sort Bidinotto, Lucas Tadeu
collection PubMed
description Copy number alterations (CNA) are one of the driving mechanisms of glioma tumorigenesis, and are currently used as important biomarkers in the routine setting. Therefore, we performed CNA profiling of 65 astrocytomas of distinct malignant grades (WHO grade I–IV) of Brazilian origin, using array-CGH and microsatellite instability analysis (MSI), and investigated their correlation with TERT and IDH1 mutational status and clinico-pathological features. Furthermore, in silico analysis using the Oncomine database was performed to validate our findings and extend the findings to gene expression level. We found that the number of genomic alterations increases in accordance with glioma grade. In glioblastomas (GBM), the most common alterations were gene amplifications (PDGFRA, KIT, KDR, EGFR, and MET) and deletions (CDKN2A and PTEN). Log-rank analysis correlated EGFR amplification and/or chr7 gain with better survival of the patients. MSI was observed in 11% of GBMs. A total of 69% of GBMs presented TERT mutation, whereas IDH1 mutation was most frequent in diffuse (85.7%) and anaplastic (100%) astrocytomas. The combination of 1p19q deletion and TERT and IDH1 mutational status separated tumor groups that showed distinct age of diagnosis and outcome. In silico validation pointed to less explored genes that may be worthy of future investigation, such as CDK2, DMRTA1, and MTAP. Herein, using an extensive integrated analysis, we indicated potentially important genes, not extensively studied in gliomas, that could be further explored to assess their biological and clinical impact in astrocytomas.
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spelling pubmed-49386412016-07-19 Copy Number Profiling of Brazilian Astrocytomas Bidinotto, Lucas Tadeu Torrieri, Raul Mackay, Alan Almeida, Gisele Caravina Viana-Pereira, Marta Cruvinel-Carloni, Adriana Spina, Maria Luisa Campanella, Nathalia Cristina Pereira de Menezes, Weder Clara, Carlos Afonso Becker, Aline Paixão Jones, Chris Reis, Rui Manuel G3 (Bethesda) Investigations Copy number alterations (CNA) are one of the driving mechanisms of glioma tumorigenesis, and are currently used as important biomarkers in the routine setting. Therefore, we performed CNA profiling of 65 astrocytomas of distinct malignant grades (WHO grade I–IV) of Brazilian origin, using array-CGH and microsatellite instability analysis (MSI), and investigated their correlation with TERT and IDH1 mutational status and clinico-pathological features. Furthermore, in silico analysis using the Oncomine database was performed to validate our findings and extend the findings to gene expression level. We found that the number of genomic alterations increases in accordance with glioma grade. In glioblastomas (GBM), the most common alterations were gene amplifications (PDGFRA, KIT, KDR, EGFR, and MET) and deletions (CDKN2A and PTEN). Log-rank analysis correlated EGFR amplification and/or chr7 gain with better survival of the patients. MSI was observed in 11% of GBMs. A total of 69% of GBMs presented TERT mutation, whereas IDH1 mutation was most frequent in diffuse (85.7%) and anaplastic (100%) astrocytomas. The combination of 1p19q deletion and TERT and IDH1 mutational status separated tumor groups that showed distinct age of diagnosis and outcome. In silico validation pointed to less explored genes that may be worthy of future investigation, such as CDK2, DMRTA1, and MTAP. Herein, using an extensive integrated analysis, we indicated potentially important genes, not extensively studied in gliomas, that could be further explored to assess their biological and clinical impact in astrocytomas. Genetics Society of America 2016-04-25 /pmc/articles/PMC4938641/ /pubmed/27172220 http://dx.doi.org/10.1534/g3.116.029884 Text en Copyright © 2016 Bidinotto et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Bidinotto, Lucas Tadeu
Torrieri, Raul
Mackay, Alan
Almeida, Gisele Caravina
Viana-Pereira, Marta
Cruvinel-Carloni, Adriana
Spina, Maria Luisa
Campanella, Nathalia Cristina
Pereira de Menezes, Weder
Clara, Carlos Afonso
Becker, Aline Paixão
Jones, Chris
Reis, Rui Manuel
Copy Number Profiling of Brazilian Astrocytomas
title Copy Number Profiling of Brazilian Astrocytomas
title_full Copy Number Profiling of Brazilian Astrocytomas
title_fullStr Copy Number Profiling of Brazilian Astrocytomas
title_full_unstemmed Copy Number Profiling of Brazilian Astrocytomas
title_short Copy Number Profiling of Brazilian Astrocytomas
title_sort copy number profiling of brazilian astrocytomas
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938641/
https://www.ncbi.nlm.nih.gov/pubmed/27172220
http://dx.doi.org/10.1534/g3.116.029884
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