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SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1

OBJECTIVE: Brown adipose tissue (BAT) is important for thermoregulation in many mammals. Uncoupling protein 1 (UCP1) is the critical regulator of thermogenesis in BAT. Here we aimed to investigate the deacetylation control of BAT and to investigate a possible functional connection between UCP1 and s...

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Autores principales: Sebaa, Rajaa, Johnson, Jeff, Pileggi, Chantal, Norgren, Michaela, Xuan, Jian, Sai, Yuka, Tong, Qiang, Krystkowiak, Izabella, Bondy-Chorney, Emma, Davey, Norman E., Krogan, Nevan, Downey, Michael, Harper, Mary-Ellen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6601363/
https://www.ncbi.nlm.nih.gov/pubmed/31060926
http://dx.doi.org/10.1016/j.molmet.2019.04.008
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author Sebaa, Rajaa
Johnson, Jeff
Pileggi, Chantal
Norgren, Michaela
Xuan, Jian
Sai, Yuka
Tong, Qiang
Krystkowiak, Izabella
Bondy-Chorney, Emma
Davey, Norman E.
Krogan, Nevan
Downey, Michael
Harper, Mary-Ellen
author_facet Sebaa, Rajaa
Johnson, Jeff
Pileggi, Chantal
Norgren, Michaela
Xuan, Jian
Sai, Yuka
Tong, Qiang
Krystkowiak, Izabella
Bondy-Chorney, Emma
Davey, Norman E.
Krogan, Nevan
Downey, Michael
Harper, Mary-Ellen
author_sort Sebaa, Rajaa
collection PubMed
description OBJECTIVE: Brown adipose tissue (BAT) is important for thermoregulation in many mammals. Uncoupling protein 1 (UCP1) is the critical regulator of thermogenesis in BAT. Here we aimed to investigate the deacetylation control of BAT and to investigate a possible functional connection between UCP1 and sirtuin 3 (SIRT3), the master mitochondrial lysine deacetylase. METHODS: We carried out physiological, molecular, and proteomic analyses of BAT from wild-type and Sirt3KO mice when BAT is activated. Mice were either cold exposed for 2 days or were injected with the β3-adrenergic agonist, CL316,243 (1 mg/kg; i.p.). Mutagenesis studies were conducted in a cellular model to assess the impact of acetylation lysine sites on UCP1 function. Cardiac punctures were collected for proteomic analysis of blood acylcarnitines. Isolated mitochondria were used for functional analysis of OXPHOS proteins. RESULTS: Our findings showed that SIRT3 absence in mice resulted in impaired BAT lipid use, whole body thermoregulation, and respiration in BAT mitochondria, without affecting UCP1 expression. Acetylome profiling of BAT mitochondria revealed that SIRT3 regulates acetylation status of many BAT mitochondrial proteins including UCP1 and crucial upstream proteins. Mutagenesis work in cells suggested that UCP1 activity was independent of direct SIRT3-regulated lysine acetylation. However, SIRT3 impacted BAT mitochondrial proteins activities of acylcarnitine metabolism and specific electron transport chain complexes, CI and CII. CONCLUSIONS: Our data highlight that SIRT3 likely controls BAT thermogenesis indirectly by targeting pathways upstream of UCP1.
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spelling pubmed-66013632019-07-12 SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1 Sebaa, Rajaa Johnson, Jeff Pileggi, Chantal Norgren, Michaela Xuan, Jian Sai, Yuka Tong, Qiang Krystkowiak, Izabella Bondy-Chorney, Emma Davey, Norman E. Krogan, Nevan Downey, Michael Harper, Mary-Ellen Mol Metab Original Article OBJECTIVE: Brown adipose tissue (BAT) is important for thermoregulation in many mammals. Uncoupling protein 1 (UCP1) is the critical regulator of thermogenesis in BAT. Here we aimed to investigate the deacetylation control of BAT and to investigate a possible functional connection between UCP1 and sirtuin 3 (SIRT3), the master mitochondrial lysine deacetylase. METHODS: We carried out physiological, molecular, and proteomic analyses of BAT from wild-type and Sirt3KO mice when BAT is activated. Mice were either cold exposed for 2 days or were injected with the β3-adrenergic agonist, CL316,243 (1 mg/kg; i.p.). Mutagenesis studies were conducted in a cellular model to assess the impact of acetylation lysine sites on UCP1 function. Cardiac punctures were collected for proteomic analysis of blood acylcarnitines. Isolated mitochondria were used for functional analysis of OXPHOS proteins. RESULTS: Our findings showed that SIRT3 absence in mice resulted in impaired BAT lipid use, whole body thermoregulation, and respiration in BAT mitochondria, without affecting UCP1 expression. Acetylome profiling of BAT mitochondria revealed that SIRT3 regulates acetylation status of many BAT mitochondrial proteins including UCP1 and crucial upstream proteins. Mutagenesis work in cells suggested that UCP1 activity was independent of direct SIRT3-regulated lysine acetylation. However, SIRT3 impacted BAT mitochondrial proteins activities of acylcarnitine metabolism and specific electron transport chain complexes, CI and CII. CONCLUSIONS: Our data highlight that SIRT3 likely controls BAT thermogenesis indirectly by targeting pathways upstream of UCP1. Elsevier 2019-04-17 /pmc/articles/PMC6601363/ /pubmed/31060926 http://dx.doi.org/10.1016/j.molmet.2019.04.008 Text en © 2019 The Authors 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 Original Article
Sebaa, Rajaa
Johnson, Jeff
Pileggi, Chantal
Norgren, Michaela
Xuan, Jian
Sai, Yuka
Tong, Qiang
Krystkowiak, Izabella
Bondy-Chorney, Emma
Davey, Norman E.
Krogan, Nevan
Downey, Michael
Harper, Mary-Ellen
SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1
title SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1
title_full SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1
title_fullStr SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1
title_full_unstemmed SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1
title_short SIRT3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of UCP1
title_sort sirt3 controls brown fat thermogenesis by deacetylation regulation of pathways upstream of ucp1
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6601363/
https://www.ncbi.nlm.nih.gov/pubmed/31060926
http://dx.doi.org/10.1016/j.molmet.2019.04.008
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