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Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing

Although nearly one fifth of all human cancers have an infectious aetiology, the causes for the majority of cancers remain unexplained. Despite the enormous data output from high-throughput shotgun sequencing, viral DNA in a clinical sample typically constitutes a proportion of host DNA that is too...

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Autores principales: Vinner, Lasse, Mourier, Tobias, Friis-Nielsen, Jens, Gniadecki, Robert, Dybkaer, Karen, Rosenberg, Jacob, Langhoff, Jill Levin, Cruz, David Flores Santa, Fonager, Jannik, Izarzugaza, Jose M. G., Gupta, Ramneek, Sicheritz-Ponten, Thomas, Brunak, Søren, Willerslev, Eske, Nielsen, Lars Peter, Hansen, Anders Johannes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4541070/
https://www.ncbi.nlm.nih.gov/pubmed/26285800
http://dx.doi.org/10.1038/srep13201
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author Vinner, Lasse
Mourier, Tobias
Friis-Nielsen, Jens
Gniadecki, Robert
Dybkaer, Karen
Rosenberg, Jacob
Langhoff, Jill Levin
Cruz, David Flores Santa
Fonager, Jannik
Izarzugaza, Jose M. G.
Gupta, Ramneek
Sicheritz-Ponten, Thomas
Brunak, Søren
Willerslev, Eske
Nielsen, Lars Peter
Hansen, Anders Johannes
author_facet Vinner, Lasse
Mourier, Tobias
Friis-Nielsen, Jens
Gniadecki, Robert
Dybkaer, Karen
Rosenberg, Jacob
Langhoff, Jill Levin
Cruz, David Flores Santa
Fonager, Jannik
Izarzugaza, Jose M. G.
Gupta, Ramneek
Sicheritz-Ponten, Thomas
Brunak, Søren
Willerslev, Eske
Nielsen, Lars Peter
Hansen, Anders Johannes
author_sort Vinner, Lasse
collection PubMed
description Although nearly one fifth of all human cancers have an infectious aetiology, the causes for the majority of cancers remain unexplained. Despite the enormous data output from high-throughput shotgun sequencing, viral DNA in a clinical sample typically constitutes a proportion of host DNA that is too small to be detected. Sequence variation among virus genomes complicates application of sequence-specific, and highly sensitive, PCR methods. Therefore, we aimed to develop and characterize a method that permits sensitive detection of sequences despite considerable variation. We demonstrate that our low-stringency in-solution hybridization method enables detection of <100 viral copies. Furthermore, distantly related proviral sequences may be enriched by orders of magnitude, enabling discovery of hitherto unknown viral sequences by high-throughput sequencing. The sensitivity was sufficient to detect retroviral sequences in clinical samples. We used this method to conduct an investigation for novel retrovirus in samples from three cancer types. In accordance with recent studies our investigation revealed no retroviral infections in human B-cell lymphoma cells, cutaneous T-cell lymphoma or colorectal cancer biopsies. Nonetheless, our generally applicable method makes sensitive detection possible and permits sequencing of distantly related sequences from complex material.
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spelling pubmed-45410702015-08-31 Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing Vinner, Lasse Mourier, Tobias Friis-Nielsen, Jens Gniadecki, Robert Dybkaer, Karen Rosenberg, Jacob Langhoff, Jill Levin Cruz, David Flores Santa Fonager, Jannik Izarzugaza, Jose M. G. Gupta, Ramneek Sicheritz-Ponten, Thomas Brunak, Søren Willerslev, Eske Nielsen, Lars Peter Hansen, Anders Johannes Sci Rep Article Although nearly one fifth of all human cancers have an infectious aetiology, the causes for the majority of cancers remain unexplained. Despite the enormous data output from high-throughput shotgun sequencing, viral DNA in a clinical sample typically constitutes a proportion of host DNA that is too small to be detected. Sequence variation among virus genomes complicates application of sequence-specific, and highly sensitive, PCR methods. Therefore, we aimed to develop and characterize a method that permits sensitive detection of sequences despite considerable variation. We demonstrate that our low-stringency in-solution hybridization method enables detection of <100 viral copies. Furthermore, distantly related proviral sequences may be enriched by orders of magnitude, enabling discovery of hitherto unknown viral sequences by high-throughput sequencing. The sensitivity was sufficient to detect retroviral sequences in clinical samples. We used this method to conduct an investigation for novel retrovirus in samples from three cancer types. In accordance with recent studies our investigation revealed no retroviral infections in human B-cell lymphoma cells, cutaneous T-cell lymphoma or colorectal cancer biopsies. Nonetheless, our generally applicable method makes sensitive detection possible and permits sequencing of distantly related sequences from complex material. Nature Publishing Group 2015-08-19 /pmc/articles/PMC4541070/ /pubmed/26285800 http://dx.doi.org/10.1038/srep13201 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Vinner, Lasse
Mourier, Tobias
Friis-Nielsen, Jens
Gniadecki, Robert
Dybkaer, Karen
Rosenberg, Jacob
Langhoff, Jill Levin
Cruz, David Flores Santa
Fonager, Jannik
Izarzugaza, Jose M. G.
Gupta, Ramneek
Sicheritz-Ponten, Thomas
Brunak, Søren
Willerslev, Eske
Nielsen, Lars Peter
Hansen, Anders Johannes
Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing
title Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing
title_full Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing
title_fullStr Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing
title_full_unstemmed Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing
title_short Investigation of Human Cancers for Retrovirus by Low-Stringency Target Enrichment and High-Throughput Sequencing
title_sort investigation of human cancers for retrovirus by low-stringency target enrichment and high-throughput sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4541070/
https://www.ncbi.nlm.nih.gov/pubmed/26285800
http://dx.doi.org/10.1038/srep13201
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