Prime, Repair, Restore: The Active Role of Chromatin in the DNA Damage Response
The view of DNA packaging into chromatin as a mere obstacle to DNA repair is evolving. In this review, we focus on histone variants and heterochromatin proteins as chromatin components involved in distinct levels of chromatin organization to integrate them as real players in the DNA damage response...
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Published in | Molecular cell Vol. 46; no. 6; pp. 722 - 734 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
29.06.2012
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Subjects | |
Online Access | Get full text |
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Abstract | The view of DNA packaging into chromatin as a mere obstacle to DNA repair is evolving. In this review, we focus on histone variants and heterochromatin proteins as chromatin components involved in distinct levels of chromatin organization to integrate them as real players in the DNA damage response (DDR). Based on recent data, we highlight how some of these chromatin components play active roles in the DDR and contribute to the fine-tuning of damage signaling, DNA and chromatin repair. To take into account this integrated view, we revisit the existing access-repair-restore model and propose a new working model involving priming chromatin for repair and restoration as a concerted process. We discuss how this impacts on both genomic and epigenomic stability and plasticity. |
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AbstractList | The view of DNA packaging into chromatin as a mere obstacle to DNA repair is evolving. In this review, we focus on histone variants and heterochromatin proteins as chromatin components involved in distinct levels of chromatin organization to integrate them as real players in the DNA damage response (DDR). Based on recent data, we highlight how some of these chromatin components play active roles in the DDR and contribute to the fine-tuning of damage signaling, DNA and chromatin repair. To take into account this integrated view, we revisit the existing access-repair-restore model and propose a new working model involving priming chromatin for repair and restoration as a concerted process. We discuss how this impacts on both genomic and epigenomic stability and plasticity. |
Author | Polo, Sophie E. Almouzni, Geneviève Soria, Gaston |
Author_xml | – sequence: 1 givenname: Gaston surname: Soria fullname: Soria, Gaston organization: Laboratory of Chromatin Dynamics, Institut Curie Section Recherche, 75248 Paris Cedex 5, France – sequence: 2 givenname: Sophie E. surname: Polo fullname: Polo, Sophie E. organization: Laboratory of Chromatin Dynamics, Institut Curie Section Recherche, 75248 Paris Cedex 5, France – sequence: 3 givenname: Geneviève surname: Almouzni fullname: Almouzni, Geneviève email: genevieve.almouzni@curie.fr organization: Laboratory of Chromatin Dynamics, Institut Curie Section Recherche, 75248 Paris Cedex 5, France |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22749398$$D View this record in MEDLINE/PubMed |
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PublicationTitle | Molecular cell |
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SubjectTerms | Animals Chromatin - metabolism DNA DNA - metabolism DNA Damage DNA packaging DNA Repair Genome heterochromatin histones Histones - metabolism Humans Models, Biological |
Title | Prime, Repair, Restore: The Active Role of Chromatin in the DNA Damage Response |
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