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Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue

Metabolic plasticity is the ability of a biological system to adapt its metabolic phenotype to different environmental stressors. We used a whole-body and tissue-specific phenotypic, functional, proteomic, metabolomic and transcriptomic approach to systematically assess metabolic plasticity in diet-...

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Autores principales: Gonzalez-Franquesa, Alba, Gama-Perez, Pau, Kulis, Marta, Szczepanowska, Karolina, Dahdah, Norma, Moreno-Gomez, Sonia, Latorre-Pellicer, Ana, Fernández-Ruiz, Rebeca, Aguilar-Mogas, Antoni, Hoffman, Anne, Monelli, Erika, Samino, Sara, Miró-Blanch, Joan, Oemer, Gregor, Duran, Xavier, Sanchez-Rebordelo, Estrella, Schneeberger, Marc, Obach, Merce, Montane, Joel, Castellano, Giancarlo, Chapaprieta, Vicente, Sun, Wenfei, Navarro, Lourdes, Prieto, Ignacio, Castaño, Carlos, Novials, Anna, Gomis, Ramon, Monsalve, Maria, Claret, Marc, Graupera, Mariona, Soria, Guadalupe, Wolfrum, Christian, Vendrell, Joan, Fernández-Veledo, Sonia, Enríquez, Jose Antonio, Carracedo, Angel, Perales, José Carlos, Nogueiras, Rubén, Herrero, Laura, Trifunovic, Aleksandra, Keller, Markus A., Yanes, Oscar, Sales-Pardo, Marta, Guimerà, Roger, Blüher, Matthias, Martín-Subero, José Ignacio, Garcia-Roves, Pablo M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9287736/
https://www.ncbi.nlm.nih.gov/pubmed/35777200
http://dx.doi.org/10.1016/j.redox.2022.102353
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author Gonzalez-Franquesa, Alba
Gama-Perez, Pau
Kulis, Marta
Szczepanowska, Karolina
Dahdah, Norma
Moreno-Gomez, Sonia
Latorre-Pellicer, Ana
Fernández-Ruiz, Rebeca
Aguilar-Mogas, Antoni
Hoffman, Anne
Monelli, Erika
Samino, Sara
Miró-Blanch, Joan
Oemer, Gregor
Duran, Xavier
Sanchez-Rebordelo, Estrella
Schneeberger, Marc
Obach, Merce
Montane, Joel
Castellano, Giancarlo
Chapaprieta, Vicente
Sun, Wenfei
Navarro, Lourdes
Prieto, Ignacio
Castaño, Carlos
Novials, Anna
Gomis, Ramon
Monsalve, Maria
Claret, Marc
Graupera, Mariona
Soria, Guadalupe
Wolfrum, Christian
Vendrell, Joan
Fernández-Veledo, Sonia
Enríquez, Jose Antonio
Carracedo, Angel
Perales, José Carlos
Nogueiras, Rubén
Herrero, Laura
Trifunovic, Aleksandra
Keller, Markus A.
Yanes, Oscar
Sales-Pardo, Marta
Guimerà, Roger
Blüher, Matthias
Martín-Subero, José Ignacio
Garcia-Roves, Pablo M.
author_facet Gonzalez-Franquesa, Alba
Gama-Perez, Pau
Kulis, Marta
Szczepanowska, Karolina
Dahdah, Norma
Moreno-Gomez, Sonia
Latorre-Pellicer, Ana
Fernández-Ruiz, Rebeca
Aguilar-Mogas, Antoni
Hoffman, Anne
Monelli, Erika
Samino, Sara
Miró-Blanch, Joan
Oemer, Gregor
Duran, Xavier
Sanchez-Rebordelo, Estrella
Schneeberger, Marc
Obach, Merce
Montane, Joel
Castellano, Giancarlo
Chapaprieta, Vicente
Sun, Wenfei
Navarro, Lourdes
Prieto, Ignacio
Castaño, Carlos
Novials, Anna
Gomis, Ramon
Monsalve, Maria
Claret, Marc
Graupera, Mariona
Soria, Guadalupe
Wolfrum, Christian
Vendrell, Joan
Fernández-Veledo, Sonia
Enríquez, Jose Antonio
Carracedo, Angel
Perales, José Carlos
Nogueiras, Rubén
Herrero, Laura
Trifunovic, Aleksandra
Keller, Markus A.
Yanes, Oscar
Sales-Pardo, Marta
Guimerà, Roger
Blüher, Matthias
Martín-Subero, José Ignacio
Garcia-Roves, Pablo M.
author_sort Gonzalez-Franquesa, Alba
collection PubMed
description Metabolic plasticity is the ability of a biological system to adapt its metabolic phenotype to different environmental stressors. We used a whole-body and tissue-specific phenotypic, functional, proteomic, metabolomic and transcriptomic approach to systematically assess metabolic plasticity in diet-induced obese mice after a combined nutritional and exercise intervention. Although most obesity and overnutrition-related pathological features were successfully reverted, we observed a high degree of metabolic dysfunction in visceral white adipose tissue, characterized by abnormal mitochondrial morphology and functionality. Despite two sequential therapeutic interventions and an apparent global healthy phenotype, obesity triggered a cascade of events in visceral adipose tissue progressing from mitochondrial metabolic and proteostatic alterations to widespread cellular stress, which compromises its biosynthetic and recycling capacity. In humans, weight loss after bariatric surgery showed a transcriptional signature in visceral adipose tissue similar to our mouse model of obesity reversion. Overall, our data indicate that obesity prompts a lasting metabolic fingerprint that leads to a progressive breakdown of metabolic plasticity in visceral adipose tissue.
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spelling pubmed-92877362022-07-17 Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue Gonzalez-Franquesa, Alba Gama-Perez, Pau Kulis, Marta Szczepanowska, Karolina Dahdah, Norma Moreno-Gomez, Sonia Latorre-Pellicer, Ana Fernández-Ruiz, Rebeca Aguilar-Mogas, Antoni Hoffman, Anne Monelli, Erika Samino, Sara Miró-Blanch, Joan Oemer, Gregor Duran, Xavier Sanchez-Rebordelo, Estrella Schneeberger, Marc Obach, Merce Montane, Joel Castellano, Giancarlo Chapaprieta, Vicente Sun, Wenfei Navarro, Lourdes Prieto, Ignacio Castaño, Carlos Novials, Anna Gomis, Ramon Monsalve, Maria Claret, Marc Graupera, Mariona Soria, Guadalupe Wolfrum, Christian Vendrell, Joan Fernández-Veledo, Sonia Enríquez, Jose Antonio Carracedo, Angel Perales, José Carlos Nogueiras, Rubén Herrero, Laura Trifunovic, Aleksandra Keller, Markus A. Yanes, Oscar Sales-Pardo, Marta Guimerà, Roger Blüher, Matthias Martín-Subero, José Ignacio Garcia-Roves, Pablo M. Redox Biol Research Paper Metabolic plasticity is the ability of a biological system to adapt its metabolic phenotype to different environmental stressors. We used a whole-body and tissue-specific phenotypic, functional, proteomic, metabolomic and transcriptomic approach to systematically assess metabolic plasticity in diet-induced obese mice after a combined nutritional and exercise intervention. Although most obesity and overnutrition-related pathological features were successfully reverted, we observed a high degree of metabolic dysfunction in visceral white adipose tissue, characterized by abnormal mitochondrial morphology and functionality. Despite two sequential therapeutic interventions and an apparent global healthy phenotype, obesity triggered a cascade of events in visceral adipose tissue progressing from mitochondrial metabolic and proteostatic alterations to widespread cellular stress, which compromises its biosynthetic and recycling capacity. In humans, weight loss after bariatric surgery showed a transcriptional signature in visceral adipose tissue similar to our mouse model of obesity reversion. Overall, our data indicate that obesity prompts a lasting metabolic fingerprint that leads to a progressive breakdown of metabolic plasticity in visceral adipose tissue. Elsevier 2022-06-24 /pmc/articles/PMC9287736/ /pubmed/35777200 http://dx.doi.org/10.1016/j.redox.2022.102353 Text en © 2022 The Author(s) 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
Gonzalez-Franquesa, Alba
Gama-Perez, Pau
Kulis, Marta
Szczepanowska, Karolina
Dahdah, Norma
Moreno-Gomez, Sonia
Latorre-Pellicer, Ana
Fernández-Ruiz, Rebeca
Aguilar-Mogas, Antoni
Hoffman, Anne
Monelli, Erika
Samino, Sara
Miró-Blanch, Joan
Oemer, Gregor
Duran, Xavier
Sanchez-Rebordelo, Estrella
Schneeberger, Marc
Obach, Merce
Montane, Joel
Castellano, Giancarlo
Chapaprieta, Vicente
Sun, Wenfei
Navarro, Lourdes
Prieto, Ignacio
Castaño, Carlos
Novials, Anna
Gomis, Ramon
Monsalve, Maria
Claret, Marc
Graupera, Mariona
Soria, Guadalupe
Wolfrum, Christian
Vendrell, Joan
Fernández-Veledo, Sonia
Enríquez, Jose Antonio
Carracedo, Angel
Perales, José Carlos
Nogueiras, Rubén
Herrero, Laura
Trifunovic, Aleksandra
Keller, Markus A.
Yanes, Oscar
Sales-Pardo, Marta
Guimerà, Roger
Blüher, Matthias
Martín-Subero, José Ignacio
Garcia-Roves, Pablo M.
Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
title Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
title_full Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
title_fullStr Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
title_full_unstemmed Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
title_short Remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
title_sort remission of obesity and insulin resistance is not sufficient to restore mitochondrial homeostasis in visceral adipose tissue
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9287736/
https://www.ncbi.nlm.nih.gov/pubmed/35777200
http://dx.doi.org/10.1016/j.redox.2022.102353
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