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A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation

Acetylation of the histone variant H2A.Z (H2A.Zac) occurs at active regulatory regions associated with gene expression. Although the Tip60 complex is proposed to acetylate H2A.Z, functional studies suggest additional enzymes are involved. Here, we show that p300 acetylates H2A.Z at multiple lysines....

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Autores principales: Colino-Sanguino, Yolanda, Cornett, Evan M., Moulder, David, Smith, Grady C., Hrit, Joel, Cordeiro-Spinetti, Eric, Vaughan, Robert M., Krajewski, Krzysztof, Rothbart, Scott B., Clark, Susan J., Valdés-Mora, Fátima
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6889796/
https://www.ncbi.nlm.nih.gov/pubmed/31727574
http://dx.doi.org/10.1016/j.isci.2019.10.053
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author Colino-Sanguino, Yolanda
Cornett, Evan M.
Moulder, David
Smith, Grady C.
Hrit, Joel
Cordeiro-Spinetti, Eric
Vaughan, Robert M.
Krajewski, Krzysztof
Rothbart, Scott B.
Clark, Susan J.
Valdés-Mora, Fátima
author_facet Colino-Sanguino, Yolanda
Cornett, Evan M.
Moulder, David
Smith, Grady C.
Hrit, Joel
Cordeiro-Spinetti, Eric
Vaughan, Robert M.
Krajewski, Krzysztof
Rothbart, Scott B.
Clark, Susan J.
Valdés-Mora, Fátima
author_sort Colino-Sanguino, Yolanda
collection PubMed
description Acetylation of the histone variant H2A.Z (H2A.Zac) occurs at active regulatory regions associated with gene expression. Although the Tip60 complex is proposed to acetylate H2A.Z, functional studies suggest additional enzymes are involved. Here, we show that p300 acetylates H2A.Z at multiple lysines. In contrast, we found that although Tip60 does not efficiently acetylate H2A.Z in vitro, genetic inhibition of Tip60 reduces H2A.Zac in cells. Importantly, we found that interaction between the p300-bromodomain and H4 acetylation (H4ac) enhances p300-driven H2A.Zac. Indeed, H2A.Zac and H4ac show high genomic overlap, especially at active promoters. We also reveal unique chromatin features and transcriptional states at enhancers correlating with co-occurrence or exclusivity of H4ac and H2A.Zac. We propose that differential H4 and H2A.Z acetylation signatures can also define the enhancer state. In conclusion, we show both Tip60 and p300 contribute to H2A.Zac and reveal molecular mechanisms of writer/reader crosstalk between H2A.Z and H4 acetylation through p300.
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spelling pubmed-68897962019-12-12 A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation Colino-Sanguino, Yolanda Cornett, Evan M. Moulder, David Smith, Grady C. Hrit, Joel Cordeiro-Spinetti, Eric Vaughan, Robert M. Krajewski, Krzysztof Rothbart, Scott B. Clark, Susan J. Valdés-Mora, Fátima iScience Article Acetylation of the histone variant H2A.Z (H2A.Zac) occurs at active regulatory regions associated with gene expression. Although the Tip60 complex is proposed to acetylate H2A.Z, functional studies suggest additional enzymes are involved. Here, we show that p300 acetylates H2A.Z at multiple lysines. In contrast, we found that although Tip60 does not efficiently acetylate H2A.Z in vitro, genetic inhibition of Tip60 reduces H2A.Zac in cells. Importantly, we found that interaction between the p300-bromodomain and H4 acetylation (H4ac) enhances p300-driven H2A.Zac. Indeed, H2A.Zac and H4ac show high genomic overlap, especially at active promoters. We also reveal unique chromatin features and transcriptional states at enhancers correlating with co-occurrence or exclusivity of H4ac and H2A.Zac. We propose that differential H4 and H2A.Z acetylation signatures can also define the enhancer state. In conclusion, we show both Tip60 and p300 contribute to H2A.Zac and reveal molecular mechanisms of writer/reader crosstalk between H2A.Z and H4 acetylation through p300. Elsevier 2019-10-31 /pmc/articles/PMC6889796/ /pubmed/31727574 http://dx.doi.org/10.1016/j.isci.2019.10.053 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Colino-Sanguino, Yolanda
Cornett, Evan M.
Moulder, David
Smith, Grady C.
Hrit, Joel
Cordeiro-Spinetti, Eric
Vaughan, Robert M.
Krajewski, Krzysztof
Rothbart, Scott B.
Clark, Susan J.
Valdés-Mora, Fátima
A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation
title A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation
title_full A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation
title_fullStr A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation
title_full_unstemmed A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation
title_short A Read/Write Mechanism Connects p300 Bromodomain Function to H2A.Z Acetylation
title_sort read/write mechanism connects p300 bromodomain function to h2a.z acetylation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6889796/
https://www.ncbi.nlm.nih.gov/pubmed/31727574
http://dx.doi.org/10.1016/j.isci.2019.10.053
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