Cargando…

Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes

Activation of energy-dissipating brown/beige adipocytes represents an attractive therapeutic strategy against metabolic disorders. While lactate is known to induce beiging through the regulation of Ucp1 gene expression, the role of lactate transporters on beige adipocytes' ongoing metabolic act...

Descripción completa

Detalles Bibliográficos
Autores principales: Lagarde, Damien, Jeanson, Yannick, Barreau, Corinne, Moro, Cedric, Peyriga, Lindsay, Cahoreau, Edern, Guissard, Christophe, Arnaud, Emmanuelle, Galinier, Anne, Bouzier-Sore, Anne-Karine, Pellerin, Luc, Chouchani, Edward T., Pénicaud, Luc, Ader, Isabelle, Portais, Jean-Charles, Casteilla, Louis, Carrière, Audrey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7949083/
https://www.ncbi.nlm.nih.gov/pubmed/33268383
http://dx.doi.org/10.1074/jbc.RA120.016303
_version_ 1783663486040014848
author Lagarde, Damien
Jeanson, Yannick
Barreau, Corinne
Moro, Cedric
Peyriga, Lindsay
Cahoreau, Edern
Guissard, Christophe
Arnaud, Emmanuelle
Galinier, Anne
Bouzier-Sore, Anne-Karine
Pellerin, Luc
Chouchani, Edward T.
Pénicaud, Luc
Ader, Isabelle
Portais, Jean-Charles
Casteilla, Louis
Carrière, Audrey
author_facet Lagarde, Damien
Jeanson, Yannick
Barreau, Corinne
Moro, Cedric
Peyriga, Lindsay
Cahoreau, Edern
Guissard, Christophe
Arnaud, Emmanuelle
Galinier, Anne
Bouzier-Sore, Anne-Karine
Pellerin, Luc
Chouchani, Edward T.
Pénicaud, Luc
Ader, Isabelle
Portais, Jean-Charles
Casteilla, Louis
Carrière, Audrey
author_sort Lagarde, Damien
collection PubMed
description Activation of energy-dissipating brown/beige adipocytes represents an attractive therapeutic strategy against metabolic disorders. While lactate is known to induce beiging through the regulation of Ucp1 gene expression, the role of lactate transporters on beige adipocytes' ongoing metabolic activity remains poorly understood. To explore the function of the lactate-transporting monocarboxylate transporters (MCTs), we used a combination of primary cell culture studies, (13)C isotopic tracing, laser microdissection experiments, and in situ immunofluorescence of murine adipose fat pads. Dissecting white adipose tissue heterogeneity revealed that the MCT1 is expressed in inducible beige adipocytes as the emergence of uncoupling protein 1 after cold exposure was restricted to a subpopulation of MCT1-expressing adipocytes suggesting MCT1 as a marker of inducible beige adipocytes. We also observed that MCT1 mediates bidirectional and simultaneous inward and outward lactate fluxes, which were required for efficient utilization of glucose by beige adipocytes activated by the canonical β3-adrenergic signaling pathway. Finally, we demonstrated that significant lactate import through MCT1 occurs even when glucose is not limiting, which feeds the oxidative metabolism of beige adipocytes. These data highlight the key role of lactate fluxes in finely tuning the metabolic activity of beige adipocytes according to extracellular metabolic conditions and reinforce the emerging role of lactate metabolism in the control of energy homeostasis.
format Online
Article
Text
id pubmed-7949083
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-79490832021-03-19 Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes Lagarde, Damien Jeanson, Yannick Barreau, Corinne Moro, Cedric Peyriga, Lindsay Cahoreau, Edern Guissard, Christophe Arnaud, Emmanuelle Galinier, Anne Bouzier-Sore, Anne-Karine Pellerin, Luc Chouchani, Edward T. Pénicaud, Luc Ader, Isabelle Portais, Jean-Charles Casteilla, Louis Carrière, Audrey J Biol Chem Research Article Activation of energy-dissipating brown/beige adipocytes represents an attractive therapeutic strategy against metabolic disorders. While lactate is known to induce beiging through the regulation of Ucp1 gene expression, the role of lactate transporters on beige adipocytes' ongoing metabolic activity remains poorly understood. To explore the function of the lactate-transporting monocarboxylate transporters (MCTs), we used a combination of primary cell culture studies, (13)C isotopic tracing, laser microdissection experiments, and in situ immunofluorescence of murine adipose fat pads. Dissecting white adipose tissue heterogeneity revealed that the MCT1 is expressed in inducible beige adipocytes as the emergence of uncoupling protein 1 after cold exposure was restricted to a subpopulation of MCT1-expressing adipocytes suggesting MCT1 as a marker of inducible beige adipocytes. We also observed that MCT1 mediates bidirectional and simultaneous inward and outward lactate fluxes, which were required for efficient utilization of glucose by beige adipocytes activated by the canonical β3-adrenergic signaling pathway. Finally, we demonstrated that significant lactate import through MCT1 occurs even when glucose is not limiting, which feeds the oxidative metabolism of beige adipocytes. These data highlight the key role of lactate fluxes in finely tuning the metabolic activity of beige adipocytes according to extracellular metabolic conditions and reinforce the emerging role of lactate metabolism in the control of energy homeostasis. American Society for Biochemistry and Molecular Biology 2020-12-06 /pmc/articles/PMC7949083/ /pubmed/33268383 http://dx.doi.org/10.1074/jbc.RA120.016303 Text en © 2020 The Authors 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 Research Article
Lagarde, Damien
Jeanson, Yannick
Barreau, Corinne
Moro, Cedric
Peyriga, Lindsay
Cahoreau, Edern
Guissard, Christophe
Arnaud, Emmanuelle
Galinier, Anne
Bouzier-Sore, Anne-Karine
Pellerin, Luc
Chouchani, Edward T.
Pénicaud, Luc
Ader, Isabelle
Portais, Jean-Charles
Casteilla, Louis
Carrière, Audrey
Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
title Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
title_full Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
title_fullStr Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
title_full_unstemmed Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
title_short Lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
title_sort lactate fluxes mediated by the monocarboxylate transporter-1 are key determinants of the metabolic activity of beige adipocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7949083/
https://www.ncbi.nlm.nih.gov/pubmed/33268383
http://dx.doi.org/10.1074/jbc.RA120.016303
work_keys_str_mv AT lagardedamien lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT jeansonyannick lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT barreaucorinne lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT morocedric lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT peyrigalindsay lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT cahoreauedern lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT guissardchristophe lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT arnaudemmanuelle lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT galinieranne lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT bouziersoreannekarine lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT pellerinluc lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT chouchaniedwardt lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT penicaudluc lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT aderisabelle lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT portaisjeancharles lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT casteillalouis lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes
AT carriereaudrey lactatefluxesmediatedbythemonocarboxylatetransporter1arekeydeterminantsofthemetabolicactivityofbeigeadipocytes