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DNA damage detection in nucleosomes involves DNA register shifting

Access to DNA packaged in nucleosomes is critical for gene regulation, DNA replication and repair. In humans, the UV-DDB complex detects ultraviolet light induced pyrimidine dimers throughout the genome, yet it remains unknown how these lesions are recognised in chromatin, where nucleosomes restrict...

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Autores principales: Matsumoto, Syota, Cavadini, Simone, Bunker, Richard D., Grand, Ralph S., Potenza, Alessandro, Rabl, Julius, Yamamoto, Junpei, Schenk, Andreas D., Schübeler, Dirk, Iwai, Shigenori, Sugasawa, Kaoru, Kurumizaka, Hitoshi, Thomä, Nicolas H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6611726/
https://www.ncbi.nlm.nih.gov/pubmed/31142837
http://dx.doi.org/10.1038/s41586-019-1259-3
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author Matsumoto, Syota
Cavadini, Simone
Bunker, Richard D.
Grand, Ralph S.
Potenza, Alessandro
Rabl, Julius
Yamamoto, Junpei
Schenk, Andreas D.
Schübeler, Dirk
Iwai, Shigenori
Sugasawa, Kaoru
Kurumizaka, Hitoshi
Thomä, Nicolas H.
author_facet Matsumoto, Syota
Cavadini, Simone
Bunker, Richard D.
Grand, Ralph S.
Potenza, Alessandro
Rabl, Julius
Yamamoto, Junpei
Schenk, Andreas D.
Schübeler, Dirk
Iwai, Shigenori
Sugasawa, Kaoru
Kurumizaka, Hitoshi
Thomä, Nicolas H.
author_sort Matsumoto, Syota
collection PubMed
description Access to DNA packaged in nucleosomes is critical for gene regulation, DNA replication and repair. In humans, the UV-DDB complex detects ultraviolet light induced pyrimidine dimers throughout the genome, yet it remains unknown how these lesions are recognised in chromatin, where nucleosomes restrict DNA access. Here we report cryo-electron microscopy structures for UV-DDB bound to nucleosomes bearing a 6-4 pyrimidine-pyrimidone dimer, and a DNA damage mimic at a variety of positions. We find that UV-DDB binds UV damaged nucleosomes at lesions located in the solvent-facing minor groove without affecting the overall nucleosome architecture. For buried lesions facing the histone core, UV-DDB changes the predominant translational register of the nucleosome, and selectively binds the lesion in an accessible, exposed, position. These findings explain how UV-DDB detects occluded lesions in strongly positioned nucleosomes. We identify slide-assisted site-exposure (SAsSE) as a mechanism for high-affinity DNA-binding proteins to access otherwise occluded sites in nucleosomal DNA.
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spelling pubmed-66117262019-07-05 DNA damage detection in nucleosomes involves DNA register shifting Matsumoto, Syota Cavadini, Simone Bunker, Richard D. Grand, Ralph S. Potenza, Alessandro Rabl, Julius Yamamoto, Junpei Schenk, Andreas D. Schübeler, Dirk Iwai, Shigenori Sugasawa, Kaoru Kurumizaka, Hitoshi Thomä, Nicolas H. Nature Article Access to DNA packaged in nucleosomes is critical for gene regulation, DNA replication and repair. In humans, the UV-DDB complex detects ultraviolet light induced pyrimidine dimers throughout the genome, yet it remains unknown how these lesions are recognised in chromatin, where nucleosomes restrict DNA access. Here we report cryo-electron microscopy structures for UV-DDB bound to nucleosomes bearing a 6-4 pyrimidine-pyrimidone dimer, and a DNA damage mimic at a variety of positions. We find that UV-DDB binds UV damaged nucleosomes at lesions located in the solvent-facing minor groove without affecting the overall nucleosome architecture. For buried lesions facing the histone core, UV-DDB changes the predominant translational register of the nucleosome, and selectively binds the lesion in an accessible, exposed, position. These findings explain how UV-DDB detects occluded lesions in strongly positioned nucleosomes. We identify slide-assisted site-exposure (SAsSE) as a mechanism for high-affinity DNA-binding proteins to access otherwise occluded sites in nucleosomal DNA. 2019-06-14 2019-05-29 /pmc/articles/PMC6611726/ /pubmed/31142837 http://dx.doi.org/10.1038/s41586-019-1259-3 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Matsumoto, Syota
Cavadini, Simone
Bunker, Richard D.
Grand, Ralph S.
Potenza, Alessandro
Rabl, Julius
Yamamoto, Junpei
Schenk, Andreas D.
Schübeler, Dirk
Iwai, Shigenori
Sugasawa, Kaoru
Kurumizaka, Hitoshi
Thomä, Nicolas H.
DNA damage detection in nucleosomes involves DNA register shifting
title DNA damage detection in nucleosomes involves DNA register shifting
title_full DNA damage detection in nucleosomes involves DNA register shifting
title_fullStr DNA damage detection in nucleosomes involves DNA register shifting
title_full_unstemmed DNA damage detection in nucleosomes involves DNA register shifting
title_short DNA damage detection in nucleosomes involves DNA register shifting
title_sort dna damage detection in nucleosomes involves dna register shifting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6611726/
https://www.ncbi.nlm.nih.gov/pubmed/31142837
http://dx.doi.org/10.1038/s41586-019-1259-3
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