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Attenuation of DNA charge transport by compaction into a nucleosome core particle

The nucleosome core particle (NCP) is the fundamental building block of chromatin which compacts ∼146 bp of DNA around a core histone protein octamer. The effects of NCP packaging on long-range DNA charge transport reactions have not been adequately assessed to date. Here we study DNA hole transport...

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Detalles Bibliográficos
Autores principales: Bjorklund, Chad C., Davis, William B.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1428796/
https://www.ncbi.nlm.nih.gov/pubmed/16595797
http://dx.doi.org/10.1093/nar/gkl030
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author Bjorklund, Chad C.
Davis, William B.
author_facet Bjorklund, Chad C.
Davis, William B.
author_sort Bjorklund, Chad C.
collection PubMed
description The nucleosome core particle (NCP) is the fundamental building block of chromatin which compacts ∼146 bp of DNA around a core histone protein octamer. The effects of NCP packaging on long-range DNA charge transport reactions have not been adequately assessed to date. Here we study DNA hole transport reactions in a 157 bp DNA duplex (AQ-157TG) incorporating multiple repeats of the DNA TG-motif, a strong NCP positioning sequence and a covalently attached Anthraquinone photooxidant. Following a thorough biophysical characterization of the structure of AQ-157TG NCPs by Exonuclease III and hydroxyl radical footprinting, we compared the dynamics of DNA charge transport in ultraviolet-irradiated free and NCP-incorporated AQ-157TG. Compaction into a NCP changes the charge transport dynamics in AQ-157TG drastically. Not only is the overall yield of oxidative lesions decreased in the NCPs, but the preferred sites of oxidative damage change as well. This NCP-dependent attenuation of DNA charge transport is attributed to DNA–protein interactions involving the folded histone core since removal of the histone tails did not perturb the charge transport dynamics in AQ-157TG NCPs.
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spelling pubmed-14287962006-04-12 Attenuation of DNA charge transport by compaction into a nucleosome core particle Bjorklund, Chad C. Davis, William B. Nucleic Acids Res Article The nucleosome core particle (NCP) is the fundamental building block of chromatin which compacts ∼146 bp of DNA around a core histone protein octamer. The effects of NCP packaging on long-range DNA charge transport reactions have not been adequately assessed to date. Here we study DNA hole transport reactions in a 157 bp DNA duplex (AQ-157TG) incorporating multiple repeats of the DNA TG-motif, a strong NCP positioning sequence and a covalently attached Anthraquinone photooxidant. Following a thorough biophysical characterization of the structure of AQ-157TG NCPs by Exonuclease III and hydroxyl radical footprinting, we compared the dynamics of DNA charge transport in ultraviolet-irradiated free and NCP-incorporated AQ-157TG. Compaction into a NCP changes the charge transport dynamics in AQ-157TG drastically. Not only is the overall yield of oxidative lesions decreased in the NCPs, but the preferred sites of oxidative damage change as well. This NCP-dependent attenuation of DNA charge transport is attributed to DNA–protein interactions involving the folded histone core since removal of the histone tails did not perturb the charge transport dynamics in AQ-157TG NCPs. Oxford University Press 2006 2006-04-04 /pmc/articles/PMC1428796/ /pubmed/16595797 http://dx.doi.org/10.1093/nar/gkl030 Text en © The Author 2006. Published by Oxford University Press. All rights reserved
spellingShingle Article
Bjorklund, Chad C.
Davis, William B.
Attenuation of DNA charge transport by compaction into a nucleosome core particle
title Attenuation of DNA charge transport by compaction into a nucleosome core particle
title_full Attenuation of DNA charge transport by compaction into a nucleosome core particle
title_fullStr Attenuation of DNA charge transport by compaction into a nucleosome core particle
title_full_unstemmed Attenuation of DNA charge transport by compaction into a nucleosome core particle
title_short Attenuation of DNA charge transport by compaction into a nucleosome core particle
title_sort attenuation of dna charge transport by compaction into a nucleosome core particle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1428796/
https://www.ncbi.nlm.nih.gov/pubmed/16595797
http://dx.doi.org/10.1093/nar/gkl030
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