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The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation

The Ewing sarcoma family of tumors (EFT) is a group of highly malignant small round blue cell tumors occurring in children and young adults. We report here the largest genomic survey to date of 101 EFT (65 tumors and 36 cell lines). Using a combination of whole genome sequencing and targeted sequenc...

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Autores principales: Brohl, Andrew S., Solomon, David A., Chang, Wendy, Wang, Jianjun, Song, Young, Sindiri, Sivasish, Patidar, Rajesh, Hurd, Laura, Chen, Li, Shern, Jack F., Liao, Hongling, Wen, Xinyu, Gerard, Julia, Kim, Jung-Sik, Lopez Guerrero, Jose Antonio, Machado, Isidro, Wai, Daniel H., Picci, Piero, Triche, Timothy, Horvai, Andrew E., Miettinen, Markku, Wei, Jun S., Catchpool, Daniel, Llombart-Bosch, Antonio, Waldman, Todd, Khan, Javed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4091782/
https://www.ncbi.nlm.nih.gov/pubmed/25010205
http://dx.doi.org/10.1371/journal.pgen.1004475
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author Brohl, Andrew S.
Solomon, David A.
Chang, Wendy
Wang, Jianjun
Song, Young
Sindiri, Sivasish
Patidar, Rajesh
Hurd, Laura
Chen, Li
Shern, Jack F.
Liao, Hongling
Wen, Xinyu
Gerard, Julia
Kim, Jung-Sik
Lopez Guerrero, Jose Antonio
Machado, Isidro
Wai, Daniel H.
Picci, Piero
Triche, Timothy
Horvai, Andrew E.
Miettinen, Markku
Wei, Jun S.
Catchpool, Daniel
Llombart-Bosch, Antonio
Waldman, Todd
Khan, Javed
author_facet Brohl, Andrew S.
Solomon, David A.
Chang, Wendy
Wang, Jianjun
Song, Young
Sindiri, Sivasish
Patidar, Rajesh
Hurd, Laura
Chen, Li
Shern, Jack F.
Liao, Hongling
Wen, Xinyu
Gerard, Julia
Kim, Jung-Sik
Lopez Guerrero, Jose Antonio
Machado, Isidro
Wai, Daniel H.
Picci, Piero
Triche, Timothy
Horvai, Andrew E.
Miettinen, Markku
Wei, Jun S.
Catchpool, Daniel
Llombart-Bosch, Antonio
Waldman, Todd
Khan, Javed
author_sort Brohl, Andrew S.
collection PubMed
description The Ewing sarcoma family of tumors (EFT) is a group of highly malignant small round blue cell tumors occurring in children and young adults. We report here the largest genomic survey to date of 101 EFT (65 tumors and 36 cell lines). Using a combination of whole genome sequencing and targeted sequencing approaches, we discover that EFT has a very low mutational burden (0.15 mutations/Mb) but frequent deleterious mutations in the cohesin complex subunit STAG2 (21.5% tumors, 44.4% cell lines), homozygous deletion of CDKN2A (13.8% and 50%) and mutations of TP53 (6.2% and 71.9%). We additionally note an increased prevalence of the BRCA2 K3326X polymorphism in EFT patient samples (7.3%) compared to population data (OR 7.1, p = 0.006). Using whole transcriptome sequencing, we find that 11% of tumors pathologically diagnosed as EFT lack a typical EWSR1 fusion oncogene and that these tumors do not have a characteristic Ewing sarcoma gene expression signature. We identify samples harboring novel fusion genes including FUS-NCATc2 and CIC-FOXO4 that may represent distinct small round blue cell tumor variants. In an independent EFT tissue microarray cohort, we show that STAG2 loss as detected by immunohistochemistry may be associated with more advanced disease (p = 0.15) and a modest decrease in overall survival (p = 0.10). These results significantly advance our understanding of the genomic and molecular underpinnings of Ewing sarcoma and provide a foundation towards further efforts to improve diagnosis, prognosis, and precision therapeutics testing.
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spelling pubmed-40917822014-07-18 The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation Brohl, Andrew S. Solomon, David A. Chang, Wendy Wang, Jianjun Song, Young Sindiri, Sivasish Patidar, Rajesh Hurd, Laura Chen, Li Shern, Jack F. Liao, Hongling Wen, Xinyu Gerard, Julia Kim, Jung-Sik Lopez Guerrero, Jose Antonio Machado, Isidro Wai, Daniel H. Picci, Piero Triche, Timothy Horvai, Andrew E. Miettinen, Markku Wei, Jun S. Catchpool, Daniel Llombart-Bosch, Antonio Waldman, Todd Khan, Javed PLoS Genet Research Article The Ewing sarcoma family of tumors (EFT) is a group of highly malignant small round blue cell tumors occurring in children and young adults. We report here the largest genomic survey to date of 101 EFT (65 tumors and 36 cell lines). Using a combination of whole genome sequencing and targeted sequencing approaches, we discover that EFT has a very low mutational burden (0.15 mutations/Mb) but frequent deleterious mutations in the cohesin complex subunit STAG2 (21.5% tumors, 44.4% cell lines), homozygous deletion of CDKN2A (13.8% and 50%) and mutations of TP53 (6.2% and 71.9%). We additionally note an increased prevalence of the BRCA2 K3326X polymorphism in EFT patient samples (7.3%) compared to population data (OR 7.1, p = 0.006). Using whole transcriptome sequencing, we find that 11% of tumors pathologically diagnosed as EFT lack a typical EWSR1 fusion oncogene and that these tumors do not have a characteristic Ewing sarcoma gene expression signature. We identify samples harboring novel fusion genes including FUS-NCATc2 and CIC-FOXO4 that may represent distinct small round blue cell tumor variants. In an independent EFT tissue microarray cohort, we show that STAG2 loss as detected by immunohistochemistry may be associated with more advanced disease (p = 0.15) and a modest decrease in overall survival (p = 0.10). These results significantly advance our understanding of the genomic and molecular underpinnings of Ewing sarcoma and provide a foundation towards further efforts to improve diagnosis, prognosis, and precision therapeutics testing. Public Library of Science 2014-07-10 /pmc/articles/PMC4091782/ /pubmed/25010205 http://dx.doi.org/10.1371/journal.pgen.1004475 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Brohl, Andrew S.
Solomon, David A.
Chang, Wendy
Wang, Jianjun
Song, Young
Sindiri, Sivasish
Patidar, Rajesh
Hurd, Laura
Chen, Li
Shern, Jack F.
Liao, Hongling
Wen, Xinyu
Gerard, Julia
Kim, Jung-Sik
Lopez Guerrero, Jose Antonio
Machado, Isidro
Wai, Daniel H.
Picci, Piero
Triche, Timothy
Horvai, Andrew E.
Miettinen, Markku
Wei, Jun S.
Catchpool, Daniel
Llombart-Bosch, Antonio
Waldman, Todd
Khan, Javed
The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation
title The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation
title_full The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation
title_fullStr The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation
title_full_unstemmed The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation
title_short The Genomic Landscape of the Ewing Sarcoma Family of Tumors Reveals Recurrent STAG2 Mutation
title_sort genomic landscape of the ewing sarcoma family of tumors reveals recurrent stag2 mutation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4091782/
https://www.ncbi.nlm.nih.gov/pubmed/25010205
http://dx.doi.org/10.1371/journal.pgen.1004475
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