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Nitro-fatty acids as activators of hSIRT6 deacetylase activity

Sirtuin 6, SIRT6, is critical for both glucose and lipid homeostasis and is involved in maintaining genomic stability under conditions of oxidative DNA damage such as those observed in age-related diseases. There is an intense search for modulators of SIRT6 activity, however, not many specific activ...

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Autores principales: Carreño, Mara, Bresque, Mariana, Machado, Matías R., Santos, Leonardo, Durán, Rosario, Vitturi, Darío A., Escande, Carlos, Denicola, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939442/
https://www.ncbi.nlm.nih.gov/pubmed/33122195
http://dx.doi.org/10.1074/jbc.RA120.014883
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author Carreño, Mara
Bresque, Mariana
Machado, Matías R.
Santos, Leonardo
Durán, Rosario
Vitturi, Darío A.
Escande, Carlos
Denicola, Ana
author_facet Carreño, Mara
Bresque, Mariana
Machado, Matías R.
Santos, Leonardo
Durán, Rosario
Vitturi, Darío A.
Escande, Carlos
Denicola, Ana
author_sort Carreño, Mara
collection PubMed
description Sirtuin 6, SIRT6, is critical for both glucose and lipid homeostasis and is involved in maintaining genomic stability under conditions of oxidative DNA damage such as those observed in age-related diseases. There is an intense search for modulators of SIRT6 activity, however, not many specific activators have been reported. Long acyl-chain fatty acids have been shown to increase the weak in vitro deacetylase activity of SIRT6 but this effect is modest at best. Herein we report that electrophilic nitro-fatty acids (nitro-oleic acid and nitro-conjugated linoleic acid) potently activate SIRT6. Binding of the nitro-fatty acid to the hydrophobic crevice of the SIRT6 active site exerted a moderate activation (2-fold at 20 μm), similar to that previously reported for non-nitrated fatty acids. However, covalent Michael adduct formation with Cys-18, a residue present at the N terminus of SIRT6 but absent from other isoforms, induced a conformational change that resulted in a much stronger activation (40-fold at 20 μm). Molecular modeling of the resulting Michael adduct suggested stabilization of the co-substrate and acyl-binding loops as a possible additional mechanism of SIRT6 activation by the nitro-fatty acid. Importantly, treatment of cells with nitro-oleic acid promoted H3K9 deacetylation, whereas oleic acid had no effect. Altogether, our results show that nitrated fatty acids can be considered a valuable tool for specific SIRT6 activation, and that SIRT6 should be considered as a molecular target for in vivo actions of these anti-inflammatory nitro-lipids.
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spelling pubmed-79394422021-06-08 Nitro-fatty acids as activators of hSIRT6 deacetylase activity Carreño, Mara Bresque, Mariana Machado, Matías R. Santos, Leonardo Durán, Rosario Vitturi, Darío A. Escande, Carlos Denicola, Ana J Biol Chem Enzymology Sirtuin 6, SIRT6, is critical for both glucose and lipid homeostasis and is involved in maintaining genomic stability under conditions of oxidative DNA damage such as those observed in age-related diseases. There is an intense search for modulators of SIRT6 activity, however, not many specific activators have been reported. Long acyl-chain fatty acids have been shown to increase the weak in vitro deacetylase activity of SIRT6 but this effect is modest at best. Herein we report that electrophilic nitro-fatty acids (nitro-oleic acid and nitro-conjugated linoleic acid) potently activate SIRT6. Binding of the nitro-fatty acid to the hydrophobic crevice of the SIRT6 active site exerted a moderate activation (2-fold at 20 μm), similar to that previously reported for non-nitrated fatty acids. However, covalent Michael adduct formation with Cys-18, a residue present at the N terminus of SIRT6 but absent from other isoforms, induced a conformational change that resulted in a much stronger activation (40-fold at 20 μm). Molecular modeling of the resulting Michael adduct suggested stabilization of the co-substrate and acyl-binding loops as a possible additional mechanism of SIRT6 activation by the nitro-fatty acid. Importantly, treatment of cells with nitro-oleic acid promoted H3K9 deacetylation, whereas oleic acid had no effect. Altogether, our results show that nitrated fatty acids can be considered a valuable tool for specific SIRT6 activation, and that SIRT6 should be considered as a molecular target for in vivo actions of these anti-inflammatory nitro-lipids. American Society for Biochemistry and Molecular Biology 2021-01-13 /pmc/articles/PMC7939442/ /pubmed/33122195 http://dx.doi.org/10.1074/jbc.RA120.014883 Text en © 2020 © 2020 Carreño et al. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Enzymology
Carreño, Mara
Bresque, Mariana
Machado, Matías R.
Santos, Leonardo
Durán, Rosario
Vitturi, Darío A.
Escande, Carlos
Denicola, Ana
Nitro-fatty acids as activators of hSIRT6 deacetylase activity
title Nitro-fatty acids as activators of hSIRT6 deacetylase activity
title_full Nitro-fatty acids as activators of hSIRT6 deacetylase activity
title_fullStr Nitro-fatty acids as activators of hSIRT6 deacetylase activity
title_full_unstemmed Nitro-fatty acids as activators of hSIRT6 deacetylase activity
title_short Nitro-fatty acids as activators of hSIRT6 deacetylase activity
title_sort nitro-fatty acids as activators of hsirt6 deacetylase activity
topic Enzymology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7939442/
https://www.ncbi.nlm.nih.gov/pubmed/33122195
http://dx.doi.org/10.1074/jbc.RA120.014883
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