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Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines

It is well established that genomic alterations play an essential role in oncogenesis, disease progression, and response of tumors to therapeutic intervention. The advances of next-generation sequencing technologies (NGS) provide unprecedented capabilities to scan genomes for changes such as mutatio...

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Autores principales: Chang, Han, Jackson, Donald G., Kayne, Paul S., Ross-Macdonald, Petra B., Ryseck, Rolf-Peter, Siemers, Nathan O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3118809/
https://www.ncbi.nlm.nih.gov/pubmed/21701589
http://dx.doi.org/10.1371/journal.pone.0021097
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author Chang, Han
Jackson, Donald G.
Kayne, Paul S.
Ross-Macdonald, Petra B.
Ryseck, Rolf-Peter
Siemers, Nathan O.
author_facet Chang, Han
Jackson, Donald G.
Kayne, Paul S.
Ross-Macdonald, Petra B.
Ryseck, Rolf-Peter
Siemers, Nathan O.
author_sort Chang, Han
collection PubMed
description It is well established that genomic alterations play an essential role in oncogenesis, disease progression, and response of tumors to therapeutic intervention. The advances of next-generation sequencing technologies (NGS) provide unprecedented capabilities to scan genomes for changes such as mutations, deletions, and alterations of chromosomal copy number. However, the cost of full-genome sequencing still prevents the routine application of NGS in many areas. Capturing and sequencing the coding exons of genes (the “exome”) can be a cost-effective approach for identifying changes that result in alteration of protein sequences. We applied an exome-sequencing technology (Roche Nimblegen capture paired with 454 sequencing) to identify sequence variation and mutations in eight commonly used cancer cell lines from a variety of tissue origins (A2780, A549, Colo205, GTL16, NCI-H661, MDA-MB468, PC3, and RD). We showed that this technology can accurately identify sequence variation, providing ∼95% concordance with Affymetrix SNP Array 6.0 performed on the same cell lines. Furthermore, we detected 19 of the 21 mutations reported in Sanger COSMIC database for these cell lines. We identified an average of 2,779 potential novel sequence variations/mutations per cell line, of which 1,904 were non-synonymous. Many non-synonymous changes were identified in kinases and known cancer-related genes. In addition we confirmed that the read-depth of exome sequence data can be used to estimate high-level gene amplifications and identify homologous deletions. In summary, we demonstrate that exome sequencing can be a reliable and cost-effective way for identifying alterations in cancer genomes, and we have generated a comprehensive catalogue of genomic alterations in coding regions of eight cancer cell lines. These findings could provide important insights into cancer pathways and mechanisms of resistance to anti-cancer therapies.
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spelling pubmed-31188092011-06-23 Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines Chang, Han Jackson, Donald G. Kayne, Paul S. Ross-Macdonald, Petra B. Ryseck, Rolf-Peter Siemers, Nathan O. PLoS One Research Article It is well established that genomic alterations play an essential role in oncogenesis, disease progression, and response of tumors to therapeutic intervention. The advances of next-generation sequencing technologies (NGS) provide unprecedented capabilities to scan genomes for changes such as mutations, deletions, and alterations of chromosomal copy number. However, the cost of full-genome sequencing still prevents the routine application of NGS in many areas. Capturing and sequencing the coding exons of genes (the “exome”) can be a cost-effective approach for identifying changes that result in alteration of protein sequences. We applied an exome-sequencing technology (Roche Nimblegen capture paired with 454 sequencing) to identify sequence variation and mutations in eight commonly used cancer cell lines from a variety of tissue origins (A2780, A549, Colo205, GTL16, NCI-H661, MDA-MB468, PC3, and RD). We showed that this technology can accurately identify sequence variation, providing ∼95% concordance with Affymetrix SNP Array 6.0 performed on the same cell lines. Furthermore, we detected 19 of the 21 mutations reported in Sanger COSMIC database for these cell lines. We identified an average of 2,779 potential novel sequence variations/mutations per cell line, of which 1,904 were non-synonymous. Many non-synonymous changes were identified in kinases and known cancer-related genes. In addition we confirmed that the read-depth of exome sequence data can be used to estimate high-level gene amplifications and identify homologous deletions. In summary, we demonstrate that exome sequencing can be a reliable and cost-effective way for identifying alterations in cancer genomes, and we have generated a comprehensive catalogue of genomic alterations in coding regions of eight cancer cell lines. These findings could provide important insights into cancer pathways and mechanisms of resistance to anti-cancer therapies. Public Library of Science 2011-06-20 /pmc/articles/PMC3118809/ /pubmed/21701589 http://dx.doi.org/10.1371/journal.pone.0021097 Text en Chang 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
Chang, Han
Jackson, Donald G.
Kayne, Paul S.
Ross-Macdonald, Petra B.
Ryseck, Rolf-Peter
Siemers, Nathan O.
Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines
title Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines
title_full Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines
title_fullStr Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines
title_full_unstemmed Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines
title_short Exome Sequencing Reveals Comprehensive Genomic Alterations across Eight Cancer Cell Lines
title_sort exome sequencing reveals comprehensive genomic alterations across eight cancer cell lines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3118809/
https://www.ncbi.nlm.nih.gov/pubmed/21701589
http://dx.doi.org/10.1371/journal.pone.0021097
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