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Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity

OBJECTIVE: Non-shivering thermogenesis in mammalian brown adipose tissue depends on thermogenic uncoupling protein 1. Its activity is triggered by free fatty acids while purine nucleotides mediate inhibition. During activation, it is thought that free fatty acids overcome purine-mediated inhibition....

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Autores principales: Fromme, Tobias, Kleigrewe, Karin, Dunkel, Andreas, Retzler, Angelika, Li, Yongguo, Maurer, Stefanie, Fischer, Natascha, Diezko, Rolf, Kanzleiter, Timo, Hirschberg, Verena, Hofmann, Thomas, Klingenspor, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985227/
https://www.ncbi.nlm.nih.gov/pubmed/29310935
http://dx.doi.org/10.1016/j.molmet.2017.12.010
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author Fromme, Tobias
Kleigrewe, Karin
Dunkel, Andreas
Retzler, Angelika
Li, Yongguo
Maurer, Stefanie
Fischer, Natascha
Diezko, Rolf
Kanzleiter, Timo
Hirschberg, Verena
Hofmann, Thomas
Klingenspor, Martin
author_facet Fromme, Tobias
Kleigrewe, Karin
Dunkel, Andreas
Retzler, Angelika
Li, Yongguo
Maurer, Stefanie
Fischer, Natascha
Diezko, Rolf
Kanzleiter, Timo
Hirschberg, Verena
Hofmann, Thomas
Klingenspor, Martin
author_sort Fromme, Tobias
collection PubMed
description OBJECTIVE: Non-shivering thermogenesis in mammalian brown adipose tissue depends on thermogenic uncoupling protein 1. Its activity is triggered by free fatty acids while purine nucleotides mediate inhibition. During activation, it is thought that free fatty acids overcome purine-mediated inhibition. We measured the cellular concentration and the release of purine nucleotide metabolites to uncover a possible role of purine nucleotide degradation in uncoupling protein 1 activation. METHODS: With mass spectrometry, purine nucleotide metabolites were quantified in cellular homogenates and supernatants of cultured primary brown adipocytes. We also determined oxygen consumption in response to a β-adrenergic agonist. RESULTS: Upon adrenergic activation, brown adipocytes decreased the intracellular concentration of inhibitory nucleotides (ATP, ADP, GTP and GDP) and released the respective degradation products. At the same time, an increase in cellular calcium occurred. None of these phenomena occurred in white adipocytes or myotubes. The brown adipocyte expression of enzymes implicated in purine metabolic remodeling is altered upon cold exposure. Pharmacological and genetic interference of purine metabolism altered uncoupling protein 1 mediated uncoupled respiration. CONCLUSION: Adrenergic stimulation of brown adipocytes lowers the intracellular concentration of purine nucleotides, thereby contributing to uncoupling protein 1 activation.
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spelling pubmed-59852272018-06-05 Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity Fromme, Tobias Kleigrewe, Karin Dunkel, Andreas Retzler, Angelika Li, Yongguo Maurer, Stefanie Fischer, Natascha Diezko, Rolf Kanzleiter, Timo Hirschberg, Verena Hofmann, Thomas Klingenspor, Martin Mol Metab Original Article OBJECTIVE: Non-shivering thermogenesis in mammalian brown adipose tissue depends on thermogenic uncoupling protein 1. Its activity is triggered by free fatty acids while purine nucleotides mediate inhibition. During activation, it is thought that free fatty acids overcome purine-mediated inhibition. We measured the cellular concentration and the release of purine nucleotide metabolites to uncover a possible role of purine nucleotide degradation in uncoupling protein 1 activation. METHODS: With mass spectrometry, purine nucleotide metabolites were quantified in cellular homogenates and supernatants of cultured primary brown adipocytes. We also determined oxygen consumption in response to a β-adrenergic agonist. RESULTS: Upon adrenergic activation, brown adipocytes decreased the intracellular concentration of inhibitory nucleotides (ATP, ADP, GTP and GDP) and released the respective degradation products. At the same time, an increase in cellular calcium occurred. None of these phenomena occurred in white adipocytes or myotubes. The brown adipocyte expression of enzymes implicated in purine metabolic remodeling is altered upon cold exposure. Pharmacological and genetic interference of purine metabolism altered uncoupling protein 1 mediated uncoupled respiration. CONCLUSION: Adrenergic stimulation of brown adipocytes lowers the intracellular concentration of purine nucleotides, thereby contributing to uncoupling protein 1 activation. Elsevier 2017-12-26 /pmc/articles/PMC5985227/ /pubmed/29310935 http://dx.doi.org/10.1016/j.molmet.2017.12.010 Text en © 2017 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
Fromme, Tobias
Kleigrewe, Karin
Dunkel, Andreas
Retzler, Angelika
Li, Yongguo
Maurer, Stefanie
Fischer, Natascha
Diezko, Rolf
Kanzleiter, Timo
Hirschberg, Verena
Hofmann, Thomas
Klingenspor, Martin
Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
title Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
title_full Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
title_fullStr Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
title_full_unstemmed Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
title_short Degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
title_sort degradation of brown adipocyte purine nucleotides regulates uncoupling protein 1 activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985227/
https://www.ncbi.nlm.nih.gov/pubmed/29310935
http://dx.doi.org/10.1016/j.molmet.2017.12.010
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