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The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms

Tumor onset and its progression are strictly linked to its metabolic rewiring on the basis of the Warburg effect. In this context, fumarate emerged as a putative oncometabolite mediating cancer progression. Fumarate accumulation is usually driven by fumarate hydratase (FH) loss of function, the enzy...

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Autores principales: Giallongo, Sebastiano, Costa, Francesco, Longhitano, Lucia, Giallongo, Cesarina, Ferrigno, Jessica, Tropea, Emanuela, Vicario, Nunzio, Li Volti, Giovanni, Parenti, Rosalba, Barbagallo, Ignazio, Bramanti, Vincenzo, Tibullo, Daniele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384640/
https://www.ncbi.nlm.nih.gov/pubmed/37512586
http://dx.doi.org/10.3390/metabo13070880
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author Giallongo, Sebastiano
Costa, Francesco
Longhitano, Lucia
Giallongo, Cesarina
Ferrigno, Jessica
Tropea, Emanuela
Vicario, Nunzio
Li Volti, Giovanni
Parenti, Rosalba
Barbagallo, Ignazio
Bramanti, Vincenzo
Tibullo, Daniele
author_facet Giallongo, Sebastiano
Costa, Francesco
Longhitano, Lucia
Giallongo, Cesarina
Ferrigno, Jessica
Tropea, Emanuela
Vicario, Nunzio
Li Volti, Giovanni
Parenti, Rosalba
Barbagallo, Ignazio
Bramanti, Vincenzo
Tibullo, Daniele
author_sort Giallongo, Sebastiano
collection PubMed
description Tumor onset and its progression are strictly linked to its metabolic rewiring on the basis of the Warburg effect. In this context, fumarate emerged as a putative oncometabolite mediating cancer progression. Fumarate accumulation is usually driven by fumarate hydratase (FH) loss of function, the enzyme responsible for the reversible conversion of fumarate into malate. Fumarate accumulation acts as a double edge sword: on one hand it takes part in the metabolic rewiring of cancer cells, while on the other it also plays a crucial role in chromatin architecture reorganization. The latter is achieved by competing with a-ketoglutarate-dependent enzymes, eventually altering the cellular methylome profile, which in turn leads to its transcriptome modeling. Furthermore, in recent years, it has emerged that FH has an ability to recruit DNA double strand breaks. The accumulation of fumarate into damaged sites might also determine the DNA repair pathway in charge for the seizure of the lesion, eventually affecting the mutational state of the cells. In this work, we aimed to review the current knowledge on the role of fumarate as an oncometabolite orchestrating the cellular epigenetic landscape and DNA repair machinery.
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spelling pubmed-103846402023-07-30 The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms Giallongo, Sebastiano Costa, Francesco Longhitano, Lucia Giallongo, Cesarina Ferrigno, Jessica Tropea, Emanuela Vicario, Nunzio Li Volti, Giovanni Parenti, Rosalba Barbagallo, Ignazio Bramanti, Vincenzo Tibullo, Daniele Metabolites Review Tumor onset and its progression are strictly linked to its metabolic rewiring on the basis of the Warburg effect. In this context, fumarate emerged as a putative oncometabolite mediating cancer progression. Fumarate accumulation is usually driven by fumarate hydratase (FH) loss of function, the enzyme responsible for the reversible conversion of fumarate into malate. Fumarate accumulation acts as a double edge sword: on one hand it takes part in the metabolic rewiring of cancer cells, while on the other it also plays a crucial role in chromatin architecture reorganization. The latter is achieved by competing with a-ketoglutarate-dependent enzymes, eventually altering the cellular methylome profile, which in turn leads to its transcriptome modeling. Furthermore, in recent years, it has emerged that FH has an ability to recruit DNA double strand breaks. The accumulation of fumarate into damaged sites might also determine the DNA repair pathway in charge for the seizure of the lesion, eventually affecting the mutational state of the cells. In this work, we aimed to review the current knowledge on the role of fumarate as an oncometabolite orchestrating the cellular epigenetic landscape and DNA repair machinery. MDPI 2023-07-24 /pmc/articles/PMC10384640/ /pubmed/37512586 http://dx.doi.org/10.3390/metabo13070880 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Giallongo, Sebastiano
Costa, Francesco
Longhitano, Lucia
Giallongo, Cesarina
Ferrigno, Jessica
Tropea, Emanuela
Vicario, Nunzio
Li Volti, Giovanni
Parenti, Rosalba
Barbagallo, Ignazio
Bramanti, Vincenzo
Tibullo, Daniele
The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms
title The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms
title_full The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms
title_fullStr The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms
title_full_unstemmed The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms
title_short The Pleiotropic Effects of Fumarate: From Mitochondrial Respiration to Epigenetic Rewiring and DNA Repair Mechanisms
title_sort pleiotropic effects of fumarate: from mitochondrial respiration to epigenetic rewiring and dna repair mechanisms
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10384640/
https://www.ncbi.nlm.nih.gov/pubmed/37512586
http://dx.doi.org/10.3390/metabo13070880
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