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Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome

Lysine acetylation is involved in various biological processes and is considered a key reversible post-translational modification in the regulation of gene expression, enzyme activity, and subcellular localization. This post-translational modification is therefore highly relevant in the context of c...

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Autores principales: Mauvoisin, Daniel, Atger, Florian, Dayon, Loïc, Núñez Galindo, Antonio, Wang, Jingkui, Martin, Eva, Da Silva, Laetitia, Montoliu, Ivan, Collino, Sebastiano, Martin, Francois-Pierre, Ratajczak, Joanna, Cantó, Carles, Kussmann, Martin, Naef, Felix, Gachon, Frédéric
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5568034/
https://www.ncbi.nlm.nih.gov/pubmed/28813682
http://dx.doi.org/10.1016/j.celrep.2017.07.065
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author Mauvoisin, Daniel
Atger, Florian
Dayon, Loïc
Núñez Galindo, Antonio
Wang, Jingkui
Martin, Eva
Da Silva, Laetitia
Montoliu, Ivan
Collino, Sebastiano
Martin, Francois-Pierre
Ratajczak, Joanna
Cantó, Carles
Kussmann, Martin
Naef, Felix
Gachon, Frédéric
author_facet Mauvoisin, Daniel
Atger, Florian
Dayon, Loïc
Núñez Galindo, Antonio
Wang, Jingkui
Martin, Eva
Da Silva, Laetitia
Montoliu, Ivan
Collino, Sebastiano
Martin, Francois-Pierre
Ratajczak, Joanna
Cantó, Carles
Kussmann, Martin
Naef, Felix
Gachon, Frédéric
author_sort Mauvoisin, Daniel
collection PubMed
description Lysine acetylation is involved in various biological processes and is considered a key reversible post-translational modification in the regulation of gene expression, enzyme activity, and subcellular localization. This post-translational modification is therefore highly relevant in the context of circadian biology, but its characterization on the proteome-wide scale and its circadian clock dependence are still poorly described. Here, we provide a comprehensive and rhythmic acetylome map of the mouse liver. Rhythmic acetylated proteins showed subcellular localization-specific phases that correlated with the related metabolites in the regulated pathways. Mitochondrial proteins were over-represented among the rhythmically acetylated proteins and were highly correlated with SIRT3-dependent deacetylation. SIRT3 activity being nicotinamide adenine dinucleotide (NAD)(+) level-dependent, we show that NAD(+) is orchestrated by both feeding rhythms and the circadian clock through the NAD(+) salvage pathway but also via the nicotinamide riboside pathway. Hence, the diurnal acetylome relies on a functional circadian clock and affects important diurnal metabolic pathways in the mouse liver.
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spelling pubmed-55680342017-08-23 Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome Mauvoisin, Daniel Atger, Florian Dayon, Loïc Núñez Galindo, Antonio Wang, Jingkui Martin, Eva Da Silva, Laetitia Montoliu, Ivan Collino, Sebastiano Martin, Francois-Pierre Ratajczak, Joanna Cantó, Carles Kussmann, Martin Naef, Felix Gachon, Frédéric Cell Rep Resource Lysine acetylation is involved in various biological processes and is considered a key reversible post-translational modification in the regulation of gene expression, enzyme activity, and subcellular localization. This post-translational modification is therefore highly relevant in the context of circadian biology, but its characterization on the proteome-wide scale and its circadian clock dependence are still poorly described. Here, we provide a comprehensive and rhythmic acetylome map of the mouse liver. Rhythmic acetylated proteins showed subcellular localization-specific phases that correlated with the related metabolites in the regulated pathways. Mitochondrial proteins were over-represented among the rhythmically acetylated proteins and were highly correlated with SIRT3-dependent deacetylation. SIRT3 activity being nicotinamide adenine dinucleotide (NAD)(+) level-dependent, we show that NAD(+) is orchestrated by both feeding rhythms and the circadian clock through the NAD(+) salvage pathway but also via the nicotinamide riboside pathway. Hence, the diurnal acetylome relies on a functional circadian clock and affects important diurnal metabolic pathways in the mouse liver. Cell Press 2017-08-15 /pmc/articles/PMC5568034/ /pubmed/28813682 http://dx.doi.org/10.1016/j.celrep.2017.07.065 Text en © 2017 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 Resource
Mauvoisin, Daniel
Atger, Florian
Dayon, Loïc
Núñez Galindo, Antonio
Wang, Jingkui
Martin, Eva
Da Silva, Laetitia
Montoliu, Ivan
Collino, Sebastiano
Martin, Francois-Pierre
Ratajczak, Joanna
Cantó, Carles
Kussmann, Martin
Naef, Felix
Gachon, Frédéric
Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome
title Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome
title_full Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome
title_fullStr Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome
title_full_unstemmed Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome
title_short Circadian and Feeding Rhythms Orchestrate the Diurnal Liver Acetylome
title_sort circadian and feeding rhythms orchestrate the diurnal liver acetylome
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5568034/
https://www.ncbi.nlm.nih.gov/pubmed/28813682
http://dx.doi.org/10.1016/j.celrep.2017.07.065
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