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Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors

Cytosine methylation provides an epigenetic level of cellular plasticity that is important for development, differentiation and cancerogenesis. We adopted microdroplet PCR to bisulfite treated target DNA in combination with second generation sequencing to simultaneously assess DNA sequence and methy...

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Autores principales: Herrmann, Alexander, Haake, Andrea, Ammerpohl, Ole, Martin-Guerrero, Idoia, Szafranski, Karol, Stemshorn, Kathryn, Nothnagel, Michael, Kotsopoulos, Steve K., Richter, Julia, Warner, Jason, Olson, Jeff, Link, Darren R., Schreiber, Stefan, Krawczak, Michael, Platzer, Matthias, Nürnberg, Peter, Siebert, Reiner, Hampe, Jochen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3130030/
https://www.ncbi.nlm.nih.gov/pubmed/21750708
http://dx.doi.org/10.1371/journal.pone.0021332
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author Herrmann, Alexander
Haake, Andrea
Ammerpohl, Ole
Martin-Guerrero, Idoia
Szafranski, Karol
Stemshorn, Kathryn
Nothnagel, Michael
Kotsopoulos, Steve K.
Richter, Julia
Warner, Jason
Olson, Jeff
Link, Darren R.
Schreiber, Stefan
Krawczak, Michael
Platzer, Matthias
Nürnberg, Peter
Siebert, Reiner
Hampe, Jochen
author_facet Herrmann, Alexander
Haake, Andrea
Ammerpohl, Ole
Martin-Guerrero, Idoia
Szafranski, Karol
Stemshorn, Kathryn
Nothnagel, Michael
Kotsopoulos, Steve K.
Richter, Julia
Warner, Jason
Olson, Jeff
Link, Darren R.
Schreiber, Stefan
Krawczak, Michael
Platzer, Matthias
Nürnberg, Peter
Siebert, Reiner
Hampe, Jochen
author_sort Herrmann, Alexander
collection PubMed
description Cytosine methylation provides an epigenetic level of cellular plasticity that is important for development, differentiation and cancerogenesis. We adopted microdroplet PCR to bisulfite treated target DNA in combination with second generation sequencing to simultaneously assess DNA sequence and methylation. We show measurement of methylation status in a wide range of target sequences (total 34 kb) with an average coverage of 95% (median 100%) and good correlation to the opposite strand (rho = 0.96) and to pyrosequencing (rho = 0.87). Data from lymphoma and colorectal cancer samples for SNRPN (imprinted gene), FGF6 (demethylated in the cancer samples) and HS3ST2 (methylated in the cancer samples) serve as a proof of principle showing the integration of SNP data and phased DNA-methylation information into “hepitypes” and thus the analysis of DNA methylation phylogeny in the somatic evolution of cancer.
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spelling pubmed-31300302011-07-12 Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors Herrmann, Alexander Haake, Andrea Ammerpohl, Ole Martin-Guerrero, Idoia Szafranski, Karol Stemshorn, Kathryn Nothnagel, Michael Kotsopoulos, Steve K. Richter, Julia Warner, Jason Olson, Jeff Link, Darren R. Schreiber, Stefan Krawczak, Michael Platzer, Matthias Nürnberg, Peter Siebert, Reiner Hampe, Jochen PLoS One Research Article Cytosine methylation provides an epigenetic level of cellular plasticity that is important for development, differentiation and cancerogenesis. We adopted microdroplet PCR to bisulfite treated target DNA in combination with second generation sequencing to simultaneously assess DNA sequence and methylation. We show measurement of methylation status in a wide range of target sequences (total 34 kb) with an average coverage of 95% (median 100%) and good correlation to the opposite strand (rho = 0.96) and to pyrosequencing (rho = 0.87). Data from lymphoma and colorectal cancer samples for SNRPN (imprinted gene), FGF6 (demethylated in the cancer samples) and HS3ST2 (methylated in the cancer samples) serve as a proof of principle showing the integration of SNP data and phased DNA-methylation information into “hepitypes” and thus the analysis of DNA methylation phylogeny in the somatic evolution of cancer. Public Library of Science 2011-07-05 /pmc/articles/PMC3130030/ /pubmed/21750708 http://dx.doi.org/10.1371/journal.pone.0021332 Text en Herrmann 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
Herrmann, Alexander
Haake, Andrea
Ammerpohl, Ole
Martin-Guerrero, Idoia
Szafranski, Karol
Stemshorn, Kathryn
Nothnagel, Michael
Kotsopoulos, Steve K.
Richter, Julia
Warner, Jason
Olson, Jeff
Link, Darren R.
Schreiber, Stefan
Krawczak, Michael
Platzer, Matthias
Nürnberg, Peter
Siebert, Reiner
Hampe, Jochen
Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors
title Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors
title_full Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors
title_fullStr Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors
title_full_unstemmed Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors
title_short Pipeline for Large-Scale Microdroplet Bisulfite PCR-Based Sequencing Allows the Tracking of Hepitype Evolution in Tumors
title_sort pipeline for large-scale microdroplet bisulfite pcr-based sequencing allows the tracking of hepitype evolution in tumors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3130030/
https://www.ncbi.nlm.nih.gov/pubmed/21750708
http://dx.doi.org/10.1371/journal.pone.0021332
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