Cargando…

Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization

DNA replication requires the recruitment of a pre-replication complex facilitated by Origin Recognition Complex (ORC) onto the chromatin during G1 phase of the cell cycle. The ORC-associated protein (ORCA/LRWD1) stabilizes ORC on chromatin. Here, we evaluated the genome-wide distribution of ORCA usi...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Yating, Khan, Abid, Marks, Anna B., Smith, Owen K., Giri, Sumanprava, Lin, Yo-Chuen, Creager, Rachel, MacAlpine, David M., Prasanth, Kannanganattu V., Aladjem, Mirit I., Prasanth, Supriya G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5389698/
https://www.ncbi.nlm.nih.gov/pubmed/27924004
http://dx.doi.org/10.1093/nar/gkw1211
_version_ 1782521323266768896
author Wang, Yating
Khan, Abid
Marks, Anna B.
Smith, Owen K.
Giri, Sumanprava
Lin, Yo-Chuen
Creager, Rachel
MacAlpine, David M.
Prasanth, Kannanganattu V.
Aladjem, Mirit I.
Prasanth, Supriya G.
author_facet Wang, Yating
Khan, Abid
Marks, Anna B.
Smith, Owen K.
Giri, Sumanprava
Lin, Yo-Chuen
Creager, Rachel
MacAlpine, David M.
Prasanth, Kannanganattu V.
Aladjem, Mirit I.
Prasanth, Supriya G.
author_sort Wang, Yating
collection PubMed
description DNA replication requires the recruitment of a pre-replication complex facilitated by Origin Recognition Complex (ORC) onto the chromatin during G1 phase of the cell cycle. The ORC-associated protein (ORCA/LRWD1) stabilizes ORC on chromatin. Here, we evaluated the genome-wide distribution of ORCA using ChIP-seq during specific time points of G1. ORCA binding sites on the G1 chromatin are dynamic and temporally regulated. ORCA association to specific genomic sites decreases as the cells progressed towards S-phase. The majority of the ORCA-bound sites represent replication origins that also associate with the repressive chromatin marks H3K9me3 and methylated-CpGs, consistent with ORCA-bound origins initiating DNA replication late in S-phase. Further, ORCA directly associates with the repressive marks and interacts with the enzymes that catalyze these marks. Regions that associate with both ORCA and H3K9me3, exhibit diminished H3K9 methylation in ORCA-depleted cells, suggesting a role for ORCA in recruiting the H3K9me3 mark at certain genomic loci. Similarly, DNA methylation is altered at ORCA-occupied sites in cells lacking ORCA. Furthermore, repressive chromatin marks influence ORCA's binding on chromatin. We propose that ORCA coordinates with the histone and DNA methylation machinery to establish a repressive chromatin environment at a subset of origins, which primes them for late replication.
format Online
Article
Text
id pubmed-5389698
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-53896982017-04-24 Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization Wang, Yating Khan, Abid Marks, Anna B. Smith, Owen K. Giri, Sumanprava Lin, Yo-Chuen Creager, Rachel MacAlpine, David M. Prasanth, Kannanganattu V. Aladjem, Mirit I. Prasanth, Supriya G. Nucleic Acids Res Gene regulation, Chromatin and Epigenetics DNA replication requires the recruitment of a pre-replication complex facilitated by Origin Recognition Complex (ORC) onto the chromatin during G1 phase of the cell cycle. The ORC-associated protein (ORCA/LRWD1) stabilizes ORC on chromatin. Here, we evaluated the genome-wide distribution of ORCA using ChIP-seq during specific time points of G1. ORCA binding sites on the G1 chromatin are dynamic and temporally regulated. ORCA association to specific genomic sites decreases as the cells progressed towards S-phase. The majority of the ORCA-bound sites represent replication origins that also associate with the repressive chromatin marks H3K9me3 and methylated-CpGs, consistent with ORCA-bound origins initiating DNA replication late in S-phase. Further, ORCA directly associates with the repressive marks and interacts with the enzymes that catalyze these marks. Regions that associate with both ORCA and H3K9me3, exhibit diminished H3K9 methylation in ORCA-depleted cells, suggesting a role for ORCA in recruiting the H3K9me3 mark at certain genomic loci. Similarly, DNA methylation is altered at ORCA-occupied sites in cells lacking ORCA. Furthermore, repressive chromatin marks influence ORCA's binding on chromatin. We propose that ORCA coordinates with the histone and DNA methylation machinery to establish a repressive chromatin environment at a subset of origins, which primes them for late replication. Oxford University Press 2017-03-17 2016-12-06 /pmc/articles/PMC5389698/ /pubmed/27924004 http://dx.doi.org/10.1093/nar/gkw1211 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Gene regulation, Chromatin and Epigenetics
Wang, Yating
Khan, Abid
Marks, Anna B.
Smith, Owen K.
Giri, Sumanprava
Lin, Yo-Chuen
Creager, Rachel
MacAlpine, David M.
Prasanth, Kannanganattu V.
Aladjem, Mirit I.
Prasanth, Supriya G.
Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization
title Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization
title_full Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization
title_fullStr Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization
title_full_unstemmed Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization
title_short Temporal association of ORCA/LRWD1 to late-firing origins during G1 dictates heterochromatin replication and organization
title_sort temporal association of orca/lrwd1 to late-firing origins during g1 dictates heterochromatin replication and organization
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5389698/
https://www.ncbi.nlm.nih.gov/pubmed/27924004
http://dx.doi.org/10.1093/nar/gkw1211
work_keys_str_mv AT wangyating temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT khanabid temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT marksannab temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT smithowenk temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT girisumanprava temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT linyochuen temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT creagerrachel temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT macalpinedavidm temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT prasanthkannanganattuv temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT aladjemmiriti temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization
AT prasanthsupriyag temporalassociationoforcalrwd1tolatefiringoriginsduringg1dictatesheterochromatinreplicationandorganization