Cargando…

Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle

Mammalian DNA replication starts at distinct chromosomal sites in a tissue-specific pattern coordinated with transcription, but previous studies have not yet identified a chromatin modification that correlates with the initiation of DNA replication at particular genomic locations. Here we report tha...

Descripción completa

Detalles Bibliográficos
Autores principales: Fu, Haiqing, Maunakea, Alika K., Martin, Melvenia M., Huang, Liang, Zhang, Ya, Ryan, Michael, Kim, RyangGuk, Lin, Chii Meil, Zhao, Keji, Aladjem, Mirit I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3674996/
https://www.ncbi.nlm.nih.gov/pubmed/23754963
http://dx.doi.org/10.1371/journal.pgen.1003542
_version_ 1782272450842591232
author Fu, Haiqing
Maunakea, Alika K.
Martin, Melvenia M.
Huang, Liang
Zhang, Ya
Ryan, Michael
Kim, RyangGuk
Lin, Chii Meil
Zhao, Keji
Aladjem, Mirit I.
author_facet Fu, Haiqing
Maunakea, Alika K.
Martin, Melvenia M.
Huang, Liang
Zhang, Ya
Ryan, Michael
Kim, RyangGuk
Lin, Chii Meil
Zhao, Keji
Aladjem, Mirit I.
author_sort Fu, Haiqing
collection PubMed
description Mammalian DNA replication starts at distinct chromosomal sites in a tissue-specific pattern coordinated with transcription, but previous studies have not yet identified a chromatin modification that correlates with the initiation of DNA replication at particular genomic locations. Here we report that a distinct fraction of replication initiation sites in the human genome are associated with a high frequency of dimethylation of histone H3 lysine K79 (H3K79Me2). H3K79Me2-containing chromatin exhibited the highest genome-wide enrichment for replication initiation events observed for any chromatin modification examined thus far (23.39% of H3K79Me2 peaks were detected in regions adjacent to replication initiation events). The association of H3K79Me2 with replication initiation sites was independent and not synergistic with other chromatin modifications. H3K79 dimethylation exhibited wider distribution on chromatin during S-phase, but only regions with H3K79 methylation in G1 and G2 were enriched in replication initiation events. H3K79 was dimethylated in a region containing a functional replicator (a DNA sequence capable of initiating DNA replication), but the methylation was not evident in a mutant replicator that could not initiate replication. Depletion of DOT1L, the sole enzyme responsible for H3K79 methylation, triggered limited genomic over-replication although most cells could continue to proliferate and replicate DNA in the absence of methylated H3K79. Thus, prevention of H3K79 methylation might affect regulatory processes that modulate the order and timing of DNA replication. These data are consistent with the hypothesis that dimethylated H3K79 associates with some replication origins and marks replicated chromatin during S-phase to prevent re-replication and preserve genomic stability.
format Online
Article
Text
id pubmed-3674996
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-36749962013-06-10 Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle Fu, Haiqing Maunakea, Alika K. Martin, Melvenia M. Huang, Liang Zhang, Ya Ryan, Michael Kim, RyangGuk Lin, Chii Meil Zhao, Keji Aladjem, Mirit I. PLoS Genet Research Article Mammalian DNA replication starts at distinct chromosomal sites in a tissue-specific pattern coordinated with transcription, but previous studies have not yet identified a chromatin modification that correlates with the initiation of DNA replication at particular genomic locations. Here we report that a distinct fraction of replication initiation sites in the human genome are associated with a high frequency of dimethylation of histone H3 lysine K79 (H3K79Me2). H3K79Me2-containing chromatin exhibited the highest genome-wide enrichment for replication initiation events observed for any chromatin modification examined thus far (23.39% of H3K79Me2 peaks were detected in regions adjacent to replication initiation events). The association of H3K79Me2 with replication initiation sites was independent and not synergistic with other chromatin modifications. H3K79 dimethylation exhibited wider distribution on chromatin during S-phase, but only regions with H3K79 methylation in G1 and G2 were enriched in replication initiation events. H3K79 was dimethylated in a region containing a functional replicator (a DNA sequence capable of initiating DNA replication), but the methylation was not evident in a mutant replicator that could not initiate replication. Depletion of DOT1L, the sole enzyme responsible for H3K79 methylation, triggered limited genomic over-replication although most cells could continue to proliferate and replicate DNA in the absence of methylated H3K79. Thus, prevention of H3K79 methylation might affect regulatory processes that modulate the order and timing of DNA replication. These data are consistent with the hypothesis that dimethylated H3K79 associates with some replication origins and marks replicated chromatin during S-phase to prevent re-replication and preserve genomic stability. Public Library of Science 2013-06-06 /pmc/articles/PMC3674996/ /pubmed/23754963 http://dx.doi.org/10.1371/journal.pgen.1003542 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Fu, Haiqing
Maunakea, Alika K.
Martin, Melvenia M.
Huang, Liang
Zhang, Ya
Ryan, Michael
Kim, RyangGuk
Lin, Chii Meil
Zhao, Keji
Aladjem, Mirit I.
Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle
title Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle
title_full Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle
title_fullStr Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle
title_full_unstemmed Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle
title_short Methylation of Histone H3 on Lysine 79 Associates with a Group of Replication Origins and Helps Limit DNA Replication Once per Cell Cycle
title_sort methylation of histone h3 on lysine 79 associates with a group of replication origins and helps limit dna replication once per cell cycle
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3674996/
https://www.ncbi.nlm.nih.gov/pubmed/23754963
http://dx.doi.org/10.1371/journal.pgen.1003542
work_keys_str_mv AT fuhaiqing methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT maunakeaalikak methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT martinmelveniam methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT huangliang methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT zhangya methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT ryanmichael methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT kimryangguk methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT linchiimeil methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT zhaokeji methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle
AT aladjemmiriti methylationofhistoneh3onlysine79associateswithagroupofreplicationoriginsandhelpslimitdnareplicationoncepercellcycle