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Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription

Histone post-translational modifications (PTMs) are critical for processes such as transcription. The more notable among these are the nonacetyl histone lysine acylation modifications such as crotonylation, butyrylation, and succinylation. However, the biological relevance of these PTMs is not fully...

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Autores principales: Kollenstart, Leonie, de Groot, Anton J. L., Janssen, George M. C., Cheng, Xue, Vreeken, Kees, Martino, Fabrizio, Côté, Jacques, van Veelen, Peter A., van Attikum, Haico
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6937567/
https://www.ncbi.nlm.nih.gov/pubmed/31699900
http://dx.doi.org/10.1074/jbc.RA119.010302
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author Kollenstart, Leonie
de Groot, Anton J. L.
Janssen, George M. C.
Cheng, Xue
Vreeken, Kees
Martino, Fabrizio
Côté, Jacques
van Veelen, Peter A.
van Attikum, Haico
author_facet Kollenstart, Leonie
de Groot, Anton J. L.
Janssen, George M. C.
Cheng, Xue
Vreeken, Kees
Martino, Fabrizio
Côté, Jacques
van Veelen, Peter A.
van Attikum, Haico
author_sort Kollenstart, Leonie
collection PubMed
description Histone post-translational modifications (PTMs) are critical for processes such as transcription. The more notable among these are the nonacetyl histone lysine acylation modifications such as crotonylation, butyrylation, and succinylation. However, the biological relevance of these PTMs is not fully understood because their regulation is largely unknown. Here, we set out to investigate whether the main histone acetyltransferases in budding yeast, Gcn5 and Esa1, possess crotonyltransferase activity. In vitro studies revealed that the Gcn5-Ada2-Ada3 (ADA) and Esa1-Yng2-Epl1 (Piccolo NuA4) histone acetyltransferase complexes have the capacity to crotonylate histones. Mass spectrometry analysis revealed that ADA and Piccolo NuA4 crotonylate lysines in the N-terminal tails of histone H3 and H4, respectively. Functionally, we show that crotonylation selectively affects gene transcription in vivo in a manner dependent on Gcn5 and Esa1. Thus, we identify the Gcn5- and Esa1-containing ADA and Piccolo NuA4 complexes as bona fide crotonyltransferases that promote crotonylation-dependent transcription.
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spelling pubmed-69375672020-01-02 Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription Kollenstart, Leonie de Groot, Anton J. L. Janssen, George M. C. Cheng, Xue Vreeken, Kees Martino, Fabrizio Côté, Jacques van Veelen, Peter A. van Attikum, Haico J Biol Chem DNA and Chromosomes Histone post-translational modifications (PTMs) are critical for processes such as transcription. The more notable among these are the nonacetyl histone lysine acylation modifications such as crotonylation, butyrylation, and succinylation. However, the biological relevance of these PTMs is not fully understood because their regulation is largely unknown. Here, we set out to investigate whether the main histone acetyltransferases in budding yeast, Gcn5 and Esa1, possess crotonyltransferase activity. In vitro studies revealed that the Gcn5-Ada2-Ada3 (ADA) and Esa1-Yng2-Epl1 (Piccolo NuA4) histone acetyltransferase complexes have the capacity to crotonylate histones. Mass spectrometry analysis revealed that ADA and Piccolo NuA4 crotonylate lysines in the N-terminal tails of histone H3 and H4, respectively. Functionally, we show that crotonylation selectively affects gene transcription in vivo in a manner dependent on Gcn5 and Esa1. Thus, we identify the Gcn5- and Esa1-containing ADA and Piccolo NuA4 complexes as bona fide crotonyltransferases that promote crotonylation-dependent transcription. American Society for Biochemistry and Molecular Biology 2019-12-27 2019-11-07 /pmc/articles/PMC6937567/ /pubmed/31699900 http://dx.doi.org/10.1074/jbc.RA119.010302 Text en © 2019 Kollenstart et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle DNA and Chromosomes
Kollenstart, Leonie
de Groot, Anton J. L.
Janssen, George M. C.
Cheng, Xue
Vreeken, Kees
Martino, Fabrizio
Côté, Jacques
van Veelen, Peter A.
van Attikum, Haico
Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
title Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
title_full Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
title_fullStr Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
title_full_unstemmed Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
title_short Gcn5 and Esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
title_sort gcn5 and esa1 function as histone crotonyltransferases to regulate crotonylation-dependent transcription
topic DNA and Chromosomes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6937567/
https://www.ncbi.nlm.nih.gov/pubmed/31699900
http://dx.doi.org/10.1074/jbc.RA119.010302
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