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Pan-cancer patterns of somatic copy-number alteration

Determining how somatic copy-number alterations (SCNAs) promote cancer is an important goal. We characterized SCNA patterns among 4934 cancers from The Cancer Genome Atlas Pan-Cancer dataset. Whole-genome doubling, observed in 37% of cancers, was associated with higher rates of every other type of S...

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Autores principales: Zack, Travis I., Schumacher, Steven E., Carter, Scott L., Cherniack, Andrew D., Saksena, Gordon, Tabak, Barbara, Lawrence, Michael S., Zhang, Cheng-Zhong, Wala, Jeremiah, Mermel, Craig H., Sougnez, Carrie, Gabriel, Stacey B., Hernandez, Bryan, Shen, Hui, Laird, Peter W., Getz, Gad, Meyerson, Matthew, Beroukhim, Rameen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3966983/
https://www.ncbi.nlm.nih.gov/pubmed/24071852
http://dx.doi.org/10.1038/ng.2760
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author Zack, Travis I.
Schumacher, Steven E.
Carter, Scott L.
Cherniack, Andrew D.
Saksena, Gordon
Tabak, Barbara
Lawrence, Michael S.
Zhang, Cheng-Zhong
Wala, Jeremiah
Mermel, Craig H.
Sougnez, Carrie
Gabriel, Stacey B.
Hernandez, Bryan
Shen, Hui
Laird, Peter W.
Getz, Gad
Meyerson, Matthew
Beroukhim, Rameen
author_facet Zack, Travis I.
Schumacher, Steven E.
Carter, Scott L.
Cherniack, Andrew D.
Saksena, Gordon
Tabak, Barbara
Lawrence, Michael S.
Zhang, Cheng-Zhong
Wala, Jeremiah
Mermel, Craig H.
Sougnez, Carrie
Gabriel, Stacey B.
Hernandez, Bryan
Shen, Hui
Laird, Peter W.
Getz, Gad
Meyerson, Matthew
Beroukhim, Rameen
author_sort Zack, Travis I.
collection PubMed
description Determining how somatic copy-number alterations (SCNAs) promote cancer is an important goal. We characterized SCNA patterns among 4934 cancers from The Cancer Genome Atlas Pan-Cancer dataset. Whole-genome doubling, observed in 37% of cancers, was associated with higher rates of every other type of SCNA, TP53 mutations, CCNE1 amplifications, and alterations of the PPP2R complex. SCNAs that were internal to chromosomes tended to be shorter than telomere-bounded SCNAs, suggesting different mechanisms of generation. Significantly recurrent focal SCNAs were observed in 140 regions, including 102 without known oncogene or tumor suppressor gene targets and 50 with significantly mutated genes. Amplified regions without known oncogenes are enriched for genes involved in epigenetic regulation. When levels of genomic disruption were accounted for, 7% of region pairs anticorrelated, and these tended to encompass genes whose proteins physically interact, suggesting related functions. These results provide insights into mechanisms of generation and functional consequences of cancer SCNAs.
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spelling pubmed-39669832015-03-26 Pan-cancer patterns of somatic copy-number alteration Zack, Travis I. Schumacher, Steven E. Carter, Scott L. Cherniack, Andrew D. Saksena, Gordon Tabak, Barbara Lawrence, Michael S. Zhang, Cheng-Zhong Wala, Jeremiah Mermel, Craig H. Sougnez, Carrie Gabriel, Stacey B. Hernandez, Bryan Shen, Hui Laird, Peter W. Getz, Gad Meyerson, Matthew Beroukhim, Rameen Nat Genet Article Determining how somatic copy-number alterations (SCNAs) promote cancer is an important goal. We characterized SCNA patterns among 4934 cancers from The Cancer Genome Atlas Pan-Cancer dataset. Whole-genome doubling, observed in 37% of cancers, was associated with higher rates of every other type of SCNA, TP53 mutations, CCNE1 amplifications, and alterations of the PPP2R complex. SCNAs that were internal to chromosomes tended to be shorter than telomere-bounded SCNAs, suggesting different mechanisms of generation. Significantly recurrent focal SCNAs were observed in 140 regions, including 102 without known oncogene or tumor suppressor gene targets and 50 with significantly mutated genes. Amplified regions without known oncogenes are enriched for genes involved in epigenetic regulation. When levels of genomic disruption were accounted for, 7% of region pairs anticorrelated, and these tended to encompass genes whose proteins physically interact, suggesting related functions. These results provide insights into mechanisms of generation and functional consequences of cancer SCNAs. 2013-10 /pmc/articles/PMC3966983/ /pubmed/24071852 http://dx.doi.org/10.1038/ng.2760 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Zack, Travis I.
Schumacher, Steven E.
Carter, Scott L.
Cherniack, Andrew D.
Saksena, Gordon
Tabak, Barbara
Lawrence, Michael S.
Zhang, Cheng-Zhong
Wala, Jeremiah
Mermel, Craig H.
Sougnez, Carrie
Gabriel, Stacey B.
Hernandez, Bryan
Shen, Hui
Laird, Peter W.
Getz, Gad
Meyerson, Matthew
Beroukhim, Rameen
Pan-cancer patterns of somatic copy-number alteration
title Pan-cancer patterns of somatic copy-number alteration
title_full Pan-cancer patterns of somatic copy-number alteration
title_fullStr Pan-cancer patterns of somatic copy-number alteration
title_full_unstemmed Pan-cancer patterns of somatic copy-number alteration
title_short Pan-cancer patterns of somatic copy-number alteration
title_sort pan-cancer patterns of somatic copy-number alteration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3966983/
https://www.ncbi.nlm.nih.gov/pubmed/24071852
http://dx.doi.org/10.1038/ng.2760
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