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Expression alterations define unique molecular characteristics of spinal ependymomas

Ependymomas are glial tumors that originate in either intracranial or spinal regions. Although tumors from different regions are histologically similar, they are biologically distinct. We therefore sought to identify molecular characteristics of spinal ependymomas (SEPN) in order to better understan...

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Autores principales: Lourdusamy, Anbarasu, Rahman, Ruman, Grundy, Richard G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4637320/
https://www.ncbi.nlm.nih.gov/pubmed/25909290
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author Lourdusamy, Anbarasu
Rahman, Ruman
Grundy, Richard G.
author_facet Lourdusamy, Anbarasu
Rahman, Ruman
Grundy, Richard G.
author_sort Lourdusamy, Anbarasu
collection PubMed
description Ependymomas are glial tumors that originate in either intracranial or spinal regions. Although tumors from different regions are histologically similar, they are biologically distinct. We therefore sought to identify molecular characteristics of spinal ependymomas (SEPN) in order to better understand the disease biology of these tumors. Using gene expression profiles of 256 tumor samples, we identified increased expression of 1,866 genes in SEPN when compared to intracranial ependymomas. These genes are mainly related to anterior/posterior pattern specification, response to oxidative stress, glial cell differentiation, DNA repair, and PPAR signalling, and also significantly enriched with cellular senescence genes (P = 5.5 × 10(−03)). In addition, a high number of significantly down-regulated genes in SEPN are localized to chromosome 22 (81 genes from chr22: 43,325,255 – 135,720,974; FDR = 1.77 × 10(−23) and 22 genes from chr22: 324,739 – 32,822,302; FDR = 2.07 × 10(−09)) including BRD1, EP300, HDAC10, HIRA, HIC2, MKL1, and NF2. Evaluation of NF2 co-expressed genes further confirms the enrichment of chromosome 22 regions. Finally, systematic integration of chromosome 22 genes with interactome and NF2 co-expression data identifies key candidate genes. Our results reveal unique molecular characteristics of SEPN such as altered expression of cellular senescence and chromosome 22 genes.
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spelling pubmed-46373202015-12-02 Expression alterations define unique molecular characteristics of spinal ependymomas Lourdusamy, Anbarasu Rahman, Ruman Grundy, Richard G. Oncotarget Research Paper Ependymomas are glial tumors that originate in either intracranial or spinal regions. Although tumors from different regions are histologically similar, they are biologically distinct. We therefore sought to identify molecular characteristics of spinal ependymomas (SEPN) in order to better understand the disease biology of these tumors. Using gene expression profiles of 256 tumor samples, we identified increased expression of 1,866 genes in SEPN when compared to intracranial ependymomas. These genes are mainly related to anterior/posterior pattern specification, response to oxidative stress, glial cell differentiation, DNA repair, and PPAR signalling, and also significantly enriched with cellular senescence genes (P = 5.5 × 10(−03)). In addition, a high number of significantly down-regulated genes in SEPN are localized to chromosome 22 (81 genes from chr22: 43,325,255 – 135,720,974; FDR = 1.77 × 10(−23) and 22 genes from chr22: 324,739 – 32,822,302; FDR = 2.07 × 10(−09)) including BRD1, EP300, HDAC10, HIRA, HIC2, MKL1, and NF2. Evaluation of NF2 co-expressed genes further confirms the enrichment of chromosome 22 regions. Finally, systematic integration of chromosome 22 genes with interactome and NF2 co-expression data identifies key candidate genes. Our results reveal unique molecular characteristics of SEPN such as altered expression of cellular senescence and chromosome 22 genes. Impact Journals LLC 2015-03-30 /pmc/articles/PMC4637320/ /pubmed/25909290 Text en Copyright: © 2015 Lourdusamy et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Lourdusamy, Anbarasu
Rahman, Ruman
Grundy, Richard G.
Expression alterations define unique molecular characteristics of spinal ependymomas
title Expression alterations define unique molecular characteristics of spinal ependymomas
title_full Expression alterations define unique molecular characteristics of spinal ependymomas
title_fullStr Expression alterations define unique molecular characteristics of spinal ependymomas
title_full_unstemmed Expression alterations define unique molecular characteristics of spinal ependymomas
title_short Expression alterations define unique molecular characteristics of spinal ependymomas
title_sort expression alterations define unique molecular characteristics of spinal ependymomas
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4637320/
https://www.ncbi.nlm.nih.gov/pubmed/25909290
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