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Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data

BACKGROUND: Telomeres are the protective arrays of tandem TTAGGG sequence and associated proteins at the termini of chromosomes. Telomeres shorten at each cell division due to the end-replication problem and are maintained above a critical threshold in malignant cancer cells to prevent cellular sene...

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Autores principales: Parker, Matthew, Chen, Xiang, Bahrami, Armita, Dalton, James, Rusch, Michael, Wu, Gang, Easton, John, Cheung, Nai-Kong, Dyer, Michael, Mardis, Elaine R, Wilson, Richard K, Mullighan, Charles, Gilbertson, Richard, Baker, Suzanne J, Zambetti, Gerard, Ellison, David W, Downing, James R, Zhang, Jinghui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3580411/
https://www.ncbi.nlm.nih.gov/pubmed/23232254
http://dx.doi.org/10.1186/gb-2012-13-12-r113
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author Parker, Matthew
Chen, Xiang
Bahrami, Armita
Dalton, James
Rusch, Michael
Wu, Gang
Easton, John
Cheung, Nai-Kong
Dyer, Michael
Mardis, Elaine R
Wilson, Richard K
Mullighan, Charles
Gilbertson, Richard
Baker, Suzanne J
Zambetti, Gerard
Ellison, David W
Downing, James R
Zhang, Jinghui
author_facet Parker, Matthew
Chen, Xiang
Bahrami, Armita
Dalton, James
Rusch, Michael
Wu, Gang
Easton, John
Cheung, Nai-Kong
Dyer, Michael
Mardis, Elaine R
Wilson, Richard K
Mullighan, Charles
Gilbertson, Richard
Baker, Suzanne J
Zambetti, Gerard
Ellison, David W
Downing, James R
Zhang, Jinghui
author_sort Parker, Matthew
collection PubMed
description BACKGROUND: Telomeres are the protective arrays of tandem TTAGGG sequence and associated proteins at the termini of chromosomes. Telomeres shorten at each cell division due to the end-replication problem and are maintained above a critical threshold in malignant cancer cells to prevent cellular senescence or apoptosis. With the recent advances in massive parallel sequencing, assessing telomere content in the context of other cancer genomic aberrations becomes an attractive possibility. We present the first comprehensive analysis of telomeric DNA content change in tumors using whole-genome sequencing data from 235 pediatric cancers. RESULTS: To measure telomeric DNA content, we counted telomeric reads containing TTAGGGx4 or CCCTAAx4 and normalized to the average genomic coverage. Changes in telomeric DNA content in tumor genomes were clustered using a Bayesian Information Criterion to determine loss, no change, or gain. Using this approach, we found that the pattern of telomeric DNA alteration varies dramatically across the landscape of pediatric malignancies: telomere gain was found in 32% of solid tumors, 4% of brain tumors and 0% of hematopoietic malignancies. The results were validated by three independent experimental approaches and reveal significant association of telomere gain with the frequency of somatic sequence mutations and structural variations. CONCLUSIONS: Telomere DNA content measurement using whole-genome sequencing data is a reliable approach that can generate useful insights into the landscape of the cancer genome. Measuring the change in telomeric DNA during malignant progression is likely to be a useful metric when considering telomeres in the context of the whole genome.
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spelling pubmed-35804112013-02-26 Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data Parker, Matthew Chen, Xiang Bahrami, Armita Dalton, James Rusch, Michael Wu, Gang Easton, John Cheung, Nai-Kong Dyer, Michael Mardis, Elaine R Wilson, Richard K Mullighan, Charles Gilbertson, Richard Baker, Suzanne J Zambetti, Gerard Ellison, David W Downing, James R Zhang, Jinghui Genome Biol Research BACKGROUND: Telomeres are the protective arrays of tandem TTAGGG sequence and associated proteins at the termini of chromosomes. Telomeres shorten at each cell division due to the end-replication problem and are maintained above a critical threshold in malignant cancer cells to prevent cellular senescence or apoptosis. With the recent advances in massive parallel sequencing, assessing telomere content in the context of other cancer genomic aberrations becomes an attractive possibility. We present the first comprehensive analysis of telomeric DNA content change in tumors using whole-genome sequencing data from 235 pediatric cancers. RESULTS: To measure telomeric DNA content, we counted telomeric reads containing TTAGGGx4 or CCCTAAx4 and normalized to the average genomic coverage. Changes in telomeric DNA content in tumor genomes were clustered using a Bayesian Information Criterion to determine loss, no change, or gain. Using this approach, we found that the pattern of telomeric DNA alteration varies dramatically across the landscape of pediatric malignancies: telomere gain was found in 32% of solid tumors, 4% of brain tumors and 0% of hematopoietic malignancies. The results were validated by three independent experimental approaches and reveal significant association of telomere gain with the frequency of somatic sequence mutations and structural variations. CONCLUSIONS: Telomere DNA content measurement using whole-genome sequencing data is a reliable approach that can generate useful insights into the landscape of the cancer genome. Measuring the change in telomeric DNA during malignant progression is likely to be a useful metric when considering telomeres in the context of the whole genome. BioMed Central 2012 2012-12-11 /pmc/articles/PMC3580411/ /pubmed/23232254 http://dx.doi.org/10.1186/gb-2012-13-12-r113 Text en Copyright ©2012 Parker et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Parker, Matthew
Chen, Xiang
Bahrami, Armita
Dalton, James
Rusch, Michael
Wu, Gang
Easton, John
Cheung, Nai-Kong
Dyer, Michael
Mardis, Elaine R
Wilson, Richard K
Mullighan, Charles
Gilbertson, Richard
Baker, Suzanne J
Zambetti, Gerard
Ellison, David W
Downing, James R
Zhang, Jinghui
Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data
title Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data
title_full Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data
title_fullStr Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data
title_full_unstemmed Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data
title_short Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data
title_sort assessing telomeric dna content in pediatric cancers using whole-genome sequencing data
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3580411/
https://www.ncbi.nlm.nih.gov/pubmed/23232254
http://dx.doi.org/10.1186/gb-2012-13-12-r113
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