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Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites

Detalles Bibliográficos
Autores principales: Emberly, Eldon, Blattes, Roxane, Schuettengruber, Bernd, Hennion, Magali, Jiang, Nan, Hart, Craig M, Käs, Emmanuel, Cuvier, Olivier
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706712/
http://dx.doi.org/10.1371/annotation/897f96fc-db2e-4ee5-b77b-4ad95768da47
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author Emberly, Eldon
Blattes, Roxane
Schuettengruber, Bernd
Hennion, Magali
Jiang, Nan
Hart, Craig M
Käs, Emmanuel
Cuvier, Olivier
author_facet Emberly, Eldon
Blattes, Roxane
Schuettengruber, Bernd
Hennion, Magali
Jiang, Nan
Hart, Craig M
Käs, Emmanuel
Cuvier, Olivier
author_sort Emberly, Eldon
collection PubMed
description
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institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Public Library of Science
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spelling pubmed-27067122009-07-09 Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites Emberly, Eldon Blattes, Roxane Schuettengruber, Bernd Hennion, Magali Jiang, Nan Hart, Craig M Käs, Emmanuel Cuvier, Olivier PLoS Biol Correction Public Library of Science 2009-06-05 /pmc/articles/PMC2706712/ http://dx.doi.org/10.1371/annotation/897f96fc-db2e-4ee5-b77b-4ad95768da47 Text en Public Library of Science.
spellingShingle Correction
Emberly, Eldon
Blattes, Roxane
Schuettengruber, Bernd
Hennion, Magali
Jiang, Nan
Hart, Craig M
Käs, Emmanuel
Cuvier, Olivier
Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites
title Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites
title_full Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites
title_fullStr Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites
title_full_unstemmed Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites
title_short Correction: BEAF Regulates Cell-Cycle Genes through the Controlled Deposition of H3K9 Methylation Marks into Its Conserved Dual-Core Binding Sites
title_sort correction: beaf regulates cell-cycle genes through the controlled deposition of h3k9 methylation marks into its conserved dual-core binding sites
topic Correction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2706712/
http://dx.doi.org/10.1371/annotation/897f96fc-db2e-4ee5-b77b-4ad95768da47
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