Cargando…

The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes

Adipocytes are critical regulators of metabolism and energy balance. While white adipocyte dysfunction is a hallmark of obesity‐associated disorders, thermogenic adipocytes are linked to cardiometabolic health. As adipocytes dynamically adapt to environmental cues by functionally switching between w...

Descripción completa

Detalles Bibliográficos
Autores principales: Giroud, Maude, Kotschi, Stefan, Kwon, Yun, Le Thuc, Ophélia, Hoffmann, Anne, Gil‐Lozano, Manuel, Karbiener, Michael, Higareda‐Almaraz, Juan Carlos, Khani, Sajjad, Tews, Daniel, Fischer‐Posovszky, Pamela, Sun, Wenfei, Dong, Hua, Ghosh, Adhideb, Wolfrum, Christian, Wabitsch, Martin, Virtanen, Kirsi A, Blüher, Matthias, Nielsen, Søren, Zeigerer, Anja, García‐Cáceres, Cristina, Scheideler, Marcel, Herzig, Stephan, Bartelt, Alexander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10561178/
https://www.ncbi.nlm.nih.gov/pubmed/37671834
http://dx.doi.org/10.15252/embr.202357600
_version_ 1785117865906536448
author Giroud, Maude
Kotschi, Stefan
Kwon, Yun
Le Thuc, Ophélia
Hoffmann, Anne
Gil‐Lozano, Manuel
Karbiener, Michael
Higareda‐Almaraz, Juan Carlos
Khani, Sajjad
Tews, Daniel
Fischer‐Posovszky, Pamela
Sun, Wenfei
Dong, Hua
Ghosh, Adhideb
Wolfrum, Christian
Wabitsch, Martin
Virtanen, Kirsi A
Blüher, Matthias
Nielsen, Søren
Zeigerer, Anja
García‐Cáceres, Cristina
Scheideler, Marcel
Herzig, Stephan
Bartelt, Alexander
author_facet Giroud, Maude
Kotschi, Stefan
Kwon, Yun
Le Thuc, Ophélia
Hoffmann, Anne
Gil‐Lozano, Manuel
Karbiener, Michael
Higareda‐Almaraz, Juan Carlos
Khani, Sajjad
Tews, Daniel
Fischer‐Posovszky, Pamela
Sun, Wenfei
Dong, Hua
Ghosh, Adhideb
Wolfrum, Christian
Wabitsch, Martin
Virtanen, Kirsi A
Blüher, Matthias
Nielsen, Søren
Zeigerer, Anja
García‐Cáceres, Cristina
Scheideler, Marcel
Herzig, Stephan
Bartelt, Alexander
author_sort Giroud, Maude
collection PubMed
description Adipocytes are critical regulators of metabolism and energy balance. While white adipocyte dysfunction is a hallmark of obesity‐associated disorders, thermogenic adipocytes are linked to cardiometabolic health. As adipocytes dynamically adapt to environmental cues by functionally switching between white and thermogenic phenotypes, a molecular understanding of this plasticity could help improving metabolism. Here, we show that the lncRNA Apoptosis associated transcript in bladder cancer (AATBC) is a human‐specific regulator of adipocyte plasticity. Comparing transcriptional profiles of human adipose tissues and cultured adipocytes we discovered that AATBC was enriched in thermogenic conditions. Using primary and immortalized human adipocytes we found that AATBC enhanced the thermogenic phenotype, which was linked to increased respiration and a more fragmented mitochondrial network. Expression of AATBC in adipose tissue of mice led to lower plasma leptin levels. Interestingly, this association was also present in human subjects, as AATBC in adipose tissue was inversely correlated with plasma leptin levels, BMI, and other measures of metabolic health. In conclusion, AATBC is a novel obesity‐linked regulator of adipocyte plasticity and mitochondrial function in humans.
format Online
Article
Text
id pubmed-10561178
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-105611782023-10-10 The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes Giroud, Maude Kotschi, Stefan Kwon, Yun Le Thuc, Ophélia Hoffmann, Anne Gil‐Lozano, Manuel Karbiener, Michael Higareda‐Almaraz, Juan Carlos Khani, Sajjad Tews, Daniel Fischer‐Posovszky, Pamela Sun, Wenfei Dong, Hua Ghosh, Adhideb Wolfrum, Christian Wabitsch, Martin Virtanen, Kirsi A Blüher, Matthias Nielsen, Søren Zeigerer, Anja García‐Cáceres, Cristina Scheideler, Marcel Herzig, Stephan Bartelt, Alexander EMBO Rep Articles Adipocytes are critical regulators of metabolism and energy balance. While white adipocyte dysfunction is a hallmark of obesity‐associated disorders, thermogenic adipocytes are linked to cardiometabolic health. As adipocytes dynamically adapt to environmental cues by functionally switching between white and thermogenic phenotypes, a molecular understanding of this plasticity could help improving metabolism. Here, we show that the lncRNA Apoptosis associated transcript in bladder cancer (AATBC) is a human‐specific regulator of adipocyte plasticity. Comparing transcriptional profiles of human adipose tissues and cultured adipocytes we discovered that AATBC was enriched in thermogenic conditions. Using primary and immortalized human adipocytes we found that AATBC enhanced the thermogenic phenotype, which was linked to increased respiration and a more fragmented mitochondrial network. Expression of AATBC in adipose tissue of mice led to lower plasma leptin levels. Interestingly, this association was also present in human subjects, as AATBC in adipose tissue was inversely correlated with plasma leptin levels, BMI, and other measures of metabolic health. In conclusion, AATBC is a novel obesity‐linked regulator of adipocyte plasticity and mitochondrial function in humans. John Wiley and Sons Inc. 2023-09-06 /pmc/articles/PMC10561178/ /pubmed/37671834 http://dx.doi.org/10.15252/embr.202357600 Text en © 2023 The Authors. Published under the terms of the CC BY NC ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Giroud, Maude
Kotschi, Stefan
Kwon, Yun
Le Thuc, Ophélia
Hoffmann, Anne
Gil‐Lozano, Manuel
Karbiener, Michael
Higareda‐Almaraz, Juan Carlos
Khani, Sajjad
Tews, Daniel
Fischer‐Posovszky, Pamela
Sun, Wenfei
Dong, Hua
Ghosh, Adhideb
Wolfrum, Christian
Wabitsch, Martin
Virtanen, Kirsi A
Blüher, Matthias
Nielsen, Søren
Zeigerer, Anja
García‐Cáceres, Cristina
Scheideler, Marcel
Herzig, Stephan
Bartelt, Alexander
The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes
title The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes
title_full The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes
title_fullStr The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes
title_full_unstemmed The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes
title_short The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes
title_sort obesity‐linked human lncrna aatbc stimulates mitochondrial function in adipocytes
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10561178/
https://www.ncbi.nlm.nih.gov/pubmed/37671834
http://dx.doi.org/10.15252/embr.202357600
work_keys_str_mv AT giroudmaude theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT kotschistefan theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT kwonyun theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT lethucophelia theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT hoffmannanne theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT gillozanomanuel theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT karbienermichael theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT higaredaalmarazjuancarlos theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT khanisajjad theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT tewsdaniel theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT fischerposovszkypamela theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT sunwenfei theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT donghua theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT ghoshadhideb theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT wolfrumchristian theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT wabitschmartin theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT virtanenkirsia theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT bluhermatthias theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT nielsensøren theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT zeigereranja theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT garciacacerescristina theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT scheidelermarcel theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT herzigstephan theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT barteltalexander theobesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT giroudmaude obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT kotschistefan obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT kwonyun obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT lethucophelia obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT hoffmannanne obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT gillozanomanuel obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT karbienermichael obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT higaredaalmarazjuancarlos obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT khanisajjad obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT tewsdaniel obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT fischerposovszkypamela obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT sunwenfei obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT donghua obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT ghoshadhideb obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT wolfrumchristian obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT wabitschmartin obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT virtanenkirsia obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT bluhermatthias obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT nielsensøren obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT zeigereranja obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT garciacacerescristina obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT scheidelermarcel obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT herzigstephan obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes
AT barteltalexander obesitylinkedhumanlncrnaaatbcstimulatesmitochondrialfunctioninadipocytes