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Recruitment and remodeling of peridroplet mitochondria in human adipose tissue

Beige adipocyte mitochondria contribute to thermogenesis by uncoupling and by ATP-consuming futile cycles. Since uncoupling may inhibit ATP synthesis, it is expected that expenditure through ATP synthesis is segregated to a disparate population of mitochondria. Recent studies in mouse brown adipocyt...

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Autores principales: Acín-Perez, Rebeca, Petcherski, Anton, Veliova, Michaela, Benador, Ilan Y., Assali, Essam A., Colleluori, Georgia, Cinti, Saverio, Brownstein, Alexandra J., Baghdasarian, Siyouneh, Livhits, Masha J., Yeh, Michael W., Krishnan, Karthickeyan Chella, Vergnes, Laurent, Winn, Nathan C., Padilla, Jaume, Liesa, Marc, Sacks, Harold S., Shirihai, Orian S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8377484/
https://www.ncbi.nlm.nih.gov/pubmed/34411987
http://dx.doi.org/10.1016/j.redox.2021.102087
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author Acín-Perez, Rebeca
Petcherski, Anton
Veliova, Michaela
Benador, Ilan Y.
Assali, Essam A.
Colleluori, Georgia
Cinti, Saverio
Brownstein, Alexandra J.
Baghdasarian, Siyouneh
Livhits, Masha J.
Yeh, Michael W.
Krishnan, Karthickeyan Chella
Vergnes, Laurent
Winn, Nathan C.
Padilla, Jaume
Liesa, Marc
Sacks, Harold S.
Shirihai, Orian S.
author_facet Acín-Perez, Rebeca
Petcherski, Anton
Veliova, Michaela
Benador, Ilan Y.
Assali, Essam A.
Colleluori, Georgia
Cinti, Saverio
Brownstein, Alexandra J.
Baghdasarian, Siyouneh
Livhits, Masha J.
Yeh, Michael W.
Krishnan, Karthickeyan Chella
Vergnes, Laurent
Winn, Nathan C.
Padilla, Jaume
Liesa, Marc
Sacks, Harold S.
Shirihai, Orian S.
author_sort Acín-Perez, Rebeca
collection PubMed
description Beige adipocyte mitochondria contribute to thermogenesis by uncoupling and by ATP-consuming futile cycles. Since uncoupling may inhibit ATP synthesis, it is expected that expenditure through ATP synthesis is segregated to a disparate population of mitochondria. Recent studies in mouse brown adipocytes identified peridroplet mitochondria (PDM) as having greater ATP synthesis and pyruvate oxidation capacities, while cytoplasmic mitochondria have increased fatty acid oxidation and uncoupling capacities. However, the occurrence of PDM in humans and the processes that result in their expansion have not been elucidated. Here, we describe a novel high-throughput assay to quantify PDM that is successfully applied to white adipose tissue from mice and humans. Using this approach, we found that PDM content varies between white and brown fat in both species. We used adipose tissue from pheochromocytoma (Pheo) patients as a model of white adipose tissue browning, which is characterized by an increase in the capacity for energy expenditure. In contrast with control subjects, PDM content was robustly increased in the periadrenal fat of Pheo patients. Remarkably, bioenergetic changes associated with browning were primarily localized to PDM compared to cytoplasmic mitochondria (CM). PDM isolated from periadrenal fat of Pheo patients had increased ATP-linked respiration, Complex IV content and activity, and maximal respiratory capacity. We found similar changes in a mouse model of re-browning where PDM content in whitened brown adipose tissue was increased upon re-browning induced by decreased housing temperature. Taken together, this study demonstrates the existence of PDM as a separate functional entity in humans and that browning in both mice and humans is associated with a robust expansion of peri-droplet mitochondria characterized by increased ATP synthesis linked respiration.
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spelling pubmed-83774842021-08-26 Recruitment and remodeling of peridroplet mitochondria in human adipose tissue Acín-Perez, Rebeca Petcherski, Anton Veliova, Michaela Benador, Ilan Y. Assali, Essam A. Colleluori, Georgia Cinti, Saverio Brownstein, Alexandra J. Baghdasarian, Siyouneh Livhits, Masha J. Yeh, Michael W. Krishnan, Karthickeyan Chella Vergnes, Laurent Winn, Nathan C. Padilla, Jaume Liesa, Marc Sacks, Harold S. Shirihai, Orian S. Redox Biol Research Paper Beige adipocyte mitochondria contribute to thermogenesis by uncoupling and by ATP-consuming futile cycles. Since uncoupling may inhibit ATP synthesis, it is expected that expenditure through ATP synthesis is segregated to a disparate population of mitochondria. Recent studies in mouse brown adipocytes identified peridroplet mitochondria (PDM) as having greater ATP synthesis and pyruvate oxidation capacities, while cytoplasmic mitochondria have increased fatty acid oxidation and uncoupling capacities. However, the occurrence of PDM in humans and the processes that result in their expansion have not been elucidated. Here, we describe a novel high-throughput assay to quantify PDM that is successfully applied to white adipose tissue from mice and humans. Using this approach, we found that PDM content varies between white and brown fat in both species. We used adipose tissue from pheochromocytoma (Pheo) patients as a model of white adipose tissue browning, which is characterized by an increase in the capacity for energy expenditure. In contrast with control subjects, PDM content was robustly increased in the periadrenal fat of Pheo patients. Remarkably, bioenergetic changes associated with browning were primarily localized to PDM compared to cytoplasmic mitochondria (CM). PDM isolated from periadrenal fat of Pheo patients had increased ATP-linked respiration, Complex IV content and activity, and maximal respiratory capacity. We found similar changes in a mouse model of re-browning where PDM content in whitened brown adipose tissue was increased upon re-browning induced by decreased housing temperature. Taken together, this study demonstrates the existence of PDM as a separate functional entity in humans and that browning in both mice and humans is associated with a robust expansion of peri-droplet mitochondria characterized by increased ATP synthesis linked respiration. Elsevier 2021-07-30 /pmc/articles/PMC8377484/ /pubmed/34411987 http://dx.doi.org/10.1016/j.redox.2021.102087 Text en © 2021 Published by Elsevier B.V. https://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 Research Paper
Acín-Perez, Rebeca
Petcherski, Anton
Veliova, Michaela
Benador, Ilan Y.
Assali, Essam A.
Colleluori, Georgia
Cinti, Saverio
Brownstein, Alexandra J.
Baghdasarian, Siyouneh
Livhits, Masha J.
Yeh, Michael W.
Krishnan, Karthickeyan Chella
Vergnes, Laurent
Winn, Nathan C.
Padilla, Jaume
Liesa, Marc
Sacks, Harold S.
Shirihai, Orian S.
Recruitment and remodeling of peridroplet mitochondria in human adipose tissue
title Recruitment and remodeling of peridroplet mitochondria in human adipose tissue
title_full Recruitment and remodeling of peridroplet mitochondria in human adipose tissue
title_fullStr Recruitment and remodeling of peridroplet mitochondria in human adipose tissue
title_full_unstemmed Recruitment and remodeling of peridroplet mitochondria in human adipose tissue
title_short Recruitment and remodeling of peridroplet mitochondria in human adipose tissue
title_sort recruitment and remodeling of peridroplet mitochondria in human adipose tissue
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8377484/
https://www.ncbi.nlm.nih.gov/pubmed/34411987
http://dx.doi.org/10.1016/j.redox.2021.102087
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