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ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4

ISWI is the catalytic subunit of several ATP-dependent chromatin remodelling factors that catalyse the sliding of nucleosomes along DNA and thereby endow chromatin with structural flexibility. Full activity of ISWI requires residues of a basic patch of amino acids in the N-terminal ‘tail’ of histone...

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Autores principales: Klinker, Henrike, Mueller-Planitz, Felix, Yang, Renliang, Forné, Ignasi, Liu, Chuan-Fa, Nordenskiöld, Lars, Becker, Peter B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3916430/
https://www.ncbi.nlm.nih.gov/pubmed/24516652
http://dx.doi.org/10.1371/journal.pone.0088411
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author Klinker, Henrike
Mueller-Planitz, Felix
Yang, Renliang
Forné, Ignasi
Liu, Chuan-Fa
Nordenskiöld, Lars
Becker, Peter B.
author_facet Klinker, Henrike
Mueller-Planitz, Felix
Yang, Renliang
Forné, Ignasi
Liu, Chuan-Fa
Nordenskiöld, Lars
Becker, Peter B.
author_sort Klinker, Henrike
collection PubMed
description ISWI is the catalytic subunit of several ATP-dependent chromatin remodelling factors that catalyse the sliding of nucleosomes along DNA and thereby endow chromatin with structural flexibility. Full activity of ISWI requires residues of a basic patch of amino acids in the N-terminal ‘tail’ of histone H4. Previous studies employing oligopeptides and mononucleosomes suggested that acetylation of the H4 tail at lysine 16 (H4K16) within the basic patch may inhibit the activity of ISWI. On the other hand, the acetylation of H4K16 is known to decompact chromatin fibres. Conceivably, decompaction may enhance the accessibility of nucleosomal DNA and the H4 tail for ISWI interactions. Such an effect can only be evaluated at the level of nucleosome arrays. We probed the influence of H4K16 acetylation on the ATPase and nucleosome sliding activity of Drosophila ISWI in the context of defined, in vitro reconstituted chromatin fibres with physiological nucleosome spacing and linker histone content. Contrary to widespread expectations, the acetylation did not inhibit ISWI activity, but rather stimulated ISWI remodelling under certain conditions. Therefore, the effect of H4K16 acetylation on ISWI remodelling depends on the precise nature of the substrate.
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spelling pubmed-39164302014-02-10 ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4 Klinker, Henrike Mueller-Planitz, Felix Yang, Renliang Forné, Ignasi Liu, Chuan-Fa Nordenskiöld, Lars Becker, Peter B. PLoS One Research Article ISWI is the catalytic subunit of several ATP-dependent chromatin remodelling factors that catalyse the sliding of nucleosomes along DNA and thereby endow chromatin with structural flexibility. Full activity of ISWI requires residues of a basic patch of amino acids in the N-terminal ‘tail’ of histone H4. Previous studies employing oligopeptides and mononucleosomes suggested that acetylation of the H4 tail at lysine 16 (H4K16) within the basic patch may inhibit the activity of ISWI. On the other hand, the acetylation of H4K16 is known to decompact chromatin fibres. Conceivably, decompaction may enhance the accessibility of nucleosomal DNA and the H4 tail for ISWI interactions. Such an effect can only be evaluated at the level of nucleosome arrays. We probed the influence of H4K16 acetylation on the ATPase and nucleosome sliding activity of Drosophila ISWI in the context of defined, in vitro reconstituted chromatin fibres with physiological nucleosome spacing and linker histone content. Contrary to widespread expectations, the acetylation did not inhibit ISWI activity, but rather stimulated ISWI remodelling under certain conditions. Therefore, the effect of H4K16 acetylation on ISWI remodelling depends on the precise nature of the substrate. Public Library of Science 2014-02-06 /pmc/articles/PMC3916430/ /pubmed/24516652 http://dx.doi.org/10.1371/journal.pone.0088411 Text en © 2014 Klinker et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Klinker, Henrike
Mueller-Planitz, Felix
Yang, Renliang
Forné, Ignasi
Liu, Chuan-Fa
Nordenskiöld, Lars
Becker, Peter B.
ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4
title ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4
title_full ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4
title_fullStr ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4
title_full_unstemmed ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4
title_short ISWI Remodelling of Physiological Chromatin Fibres Acetylated at Lysine 16 of Histone H4
title_sort iswi remodelling of physiological chromatin fibres acetylated at lysine 16 of histone h4
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3916430/
https://www.ncbi.nlm.nih.gov/pubmed/24516652
http://dx.doi.org/10.1371/journal.pone.0088411
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