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Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia

We have developed an enhanced form of reduced representation bisulfite sequencing with extended genomic coverage, which resulted in greater capture of DNA methylation information of regions lying outside of traditional CpG islands. Applying this method to primary human bone marrow specimens from pat...

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Autores principales: Akalin, Altuna, Garrett-Bakelman, Francine E., Kormaksson, Matthias, Busuttil, Jennifer, Zhang, Lu, Khrebtukova, Irina, Milne, Thomas A., Huang, Yongsheng, Biswas, Debabrata, Hess, Jay L., Allis, C. David, Roeder, Robert G., Valk, Peter J. M., Löwenberg, Bob, Delwel, Ruud, Fernandez, Hugo F., Paietta, Elisabeth, Tallman, Martin S., Schroth, Gary P., Mason, Christopher E., Melnick, Ari, Figueroa, Maria E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3380828/
https://www.ncbi.nlm.nih.gov/pubmed/22737091
http://dx.doi.org/10.1371/journal.pgen.1002781
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author Akalin, Altuna
Garrett-Bakelman, Francine E.
Kormaksson, Matthias
Busuttil, Jennifer
Zhang, Lu
Khrebtukova, Irina
Milne, Thomas A.
Huang, Yongsheng
Biswas, Debabrata
Hess, Jay L.
Allis, C. David
Roeder, Robert G.
Valk, Peter J. M.
Löwenberg, Bob
Delwel, Ruud
Fernandez, Hugo F.
Paietta, Elisabeth
Tallman, Martin S.
Schroth, Gary P.
Mason, Christopher E.
Melnick, Ari
Figueroa, Maria E.
author_facet Akalin, Altuna
Garrett-Bakelman, Francine E.
Kormaksson, Matthias
Busuttil, Jennifer
Zhang, Lu
Khrebtukova, Irina
Milne, Thomas A.
Huang, Yongsheng
Biswas, Debabrata
Hess, Jay L.
Allis, C. David
Roeder, Robert G.
Valk, Peter J. M.
Löwenberg, Bob
Delwel, Ruud
Fernandez, Hugo F.
Paietta, Elisabeth
Tallman, Martin S.
Schroth, Gary P.
Mason, Christopher E.
Melnick, Ari
Figueroa, Maria E.
author_sort Akalin, Altuna
collection PubMed
description We have developed an enhanced form of reduced representation bisulfite sequencing with extended genomic coverage, which resulted in greater capture of DNA methylation information of regions lying outside of traditional CpG islands. Applying this method to primary human bone marrow specimens from patients with Acute Myelogeneous Leukemia (AML), we demonstrated that genetically distinct AML subtypes display diametrically opposed DNA methylation patterns. As compared to normal controls, we observed widespread hypermethylation in IDH mutant AMLs, preferentially targeting promoter regions and CpG islands neighboring the transcription start sites of genes. In contrast, AMLs harboring translocations affecting the MLL gene displayed extensive loss of methylation of an almost mutually exclusive set of CpGs, which instead affected introns and distal intergenic CpG islands and shores. When analyzed in conjunction with gene expression profiles, it became apparent that these specific patterns of DNA methylation result in differing roles in gene expression regulation. However, despite this subtype-specific DNA methylation patterning, a much smaller set of CpG sites are consistently affected in both AML subtypes. Most CpG sites in this common core of aberrantly methylated CpGs were hypermethylated in both AML subtypes. Therefore, aberrant DNA methylation patterns in AML do not occur in a stereotypical manner but rather are highly specific and associated with specific driving genetic lesions.
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spelling pubmed-33808282012-06-26 Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia Akalin, Altuna Garrett-Bakelman, Francine E. Kormaksson, Matthias Busuttil, Jennifer Zhang, Lu Khrebtukova, Irina Milne, Thomas A. Huang, Yongsheng Biswas, Debabrata Hess, Jay L. Allis, C. David Roeder, Robert G. Valk, Peter J. M. Löwenberg, Bob Delwel, Ruud Fernandez, Hugo F. Paietta, Elisabeth Tallman, Martin S. Schroth, Gary P. Mason, Christopher E. Melnick, Ari Figueroa, Maria E. PLoS Genet Research Article We have developed an enhanced form of reduced representation bisulfite sequencing with extended genomic coverage, which resulted in greater capture of DNA methylation information of regions lying outside of traditional CpG islands. Applying this method to primary human bone marrow specimens from patients with Acute Myelogeneous Leukemia (AML), we demonstrated that genetically distinct AML subtypes display diametrically opposed DNA methylation patterns. As compared to normal controls, we observed widespread hypermethylation in IDH mutant AMLs, preferentially targeting promoter regions and CpG islands neighboring the transcription start sites of genes. In contrast, AMLs harboring translocations affecting the MLL gene displayed extensive loss of methylation of an almost mutually exclusive set of CpGs, which instead affected introns and distal intergenic CpG islands and shores. When analyzed in conjunction with gene expression profiles, it became apparent that these specific patterns of DNA methylation result in differing roles in gene expression regulation. However, despite this subtype-specific DNA methylation patterning, a much smaller set of CpG sites are consistently affected in both AML subtypes. Most CpG sites in this common core of aberrantly methylated CpGs were hypermethylated in both AML subtypes. Therefore, aberrant DNA methylation patterns in AML do not occur in a stereotypical manner but rather are highly specific and associated with specific driving genetic lesions. Public Library of Science 2012-06-21 /pmc/articles/PMC3380828/ /pubmed/22737091 http://dx.doi.org/10.1371/journal.pgen.1002781 Text en Akalin 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
Akalin, Altuna
Garrett-Bakelman, Francine E.
Kormaksson, Matthias
Busuttil, Jennifer
Zhang, Lu
Khrebtukova, Irina
Milne, Thomas A.
Huang, Yongsheng
Biswas, Debabrata
Hess, Jay L.
Allis, C. David
Roeder, Robert G.
Valk, Peter J. M.
Löwenberg, Bob
Delwel, Ruud
Fernandez, Hugo F.
Paietta, Elisabeth
Tallman, Martin S.
Schroth, Gary P.
Mason, Christopher E.
Melnick, Ari
Figueroa, Maria E.
Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia
title Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia
title_full Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia
title_fullStr Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia
title_full_unstemmed Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia
title_short Base-Pair Resolution DNA Methylation Sequencing Reveals Profoundly Divergent Epigenetic Landscapes in Acute Myeloid Leukemia
title_sort base-pair resolution dna methylation sequencing reveals profoundly divergent epigenetic landscapes in acute myeloid leukemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3380828/
https://www.ncbi.nlm.nih.gov/pubmed/22737091
http://dx.doi.org/10.1371/journal.pgen.1002781
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