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Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria

Inherited disorders of mitochondrial metabolism, including isolated methylmalonic aciduria, present unique challenges to energetic homeostasis by disrupting energy-producing pathways. To better understand global responses to energy shortage, we investigated a hemizygous mouse model of methylmalonyl-...

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Autores principales: Lucienne, Marie, Gerlini, Raffaele, Rathkolb, Birgit, Calzada-Wack, Julia, Forny, Patrick, Wueest, Stephan, Kaech, Andres, Traversi, Florian, Forny, Merima, Bürer, Céline, Aguilar-Pimentel, Antonio, Irmler, Martin, Beckers, Johannes, Sauer, Sven, Kölker, Stefan, Dewulf, Joseph P, Bommer, Guido T, Hoces, Daniel, Gailus-Durner, Valerie, Fuchs, Helmut, Rozman, Jan, Froese, D Sean, Baumgartner, Matthias R, de Angelis, Martin Hrabě
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10460489/
https://www.ncbi.nlm.nih.gov/pubmed/37369025
http://dx.doi.org/10.1093/hmg/ddad100
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author Lucienne, Marie
Gerlini, Raffaele
Rathkolb, Birgit
Calzada-Wack, Julia
Forny, Patrick
Wueest, Stephan
Kaech, Andres
Traversi, Florian
Forny, Merima
Bürer, Céline
Aguilar-Pimentel, Antonio
Irmler, Martin
Beckers, Johannes
Sauer, Sven
Kölker, Stefan
Dewulf, Joseph P
Bommer, Guido T
Hoces, Daniel
Gailus-Durner, Valerie
Fuchs, Helmut
Rozman, Jan
Froese, D Sean
Baumgartner, Matthias R
de Angelis, Martin Hrabě
author_facet Lucienne, Marie
Gerlini, Raffaele
Rathkolb, Birgit
Calzada-Wack, Julia
Forny, Patrick
Wueest, Stephan
Kaech, Andres
Traversi, Florian
Forny, Merima
Bürer, Céline
Aguilar-Pimentel, Antonio
Irmler, Martin
Beckers, Johannes
Sauer, Sven
Kölker, Stefan
Dewulf, Joseph P
Bommer, Guido T
Hoces, Daniel
Gailus-Durner, Valerie
Fuchs, Helmut
Rozman, Jan
Froese, D Sean
Baumgartner, Matthias R
de Angelis, Martin Hrabě
author_sort Lucienne, Marie
collection PubMed
description Inherited disorders of mitochondrial metabolism, including isolated methylmalonic aciduria, present unique challenges to energetic homeostasis by disrupting energy-producing pathways. To better understand global responses to energy shortage, we investigated a hemizygous mouse model of methylmalonyl-CoA mutase (Mmut)–type methylmalonic aciduria. We found Mmut mutant mice to have reduced appetite, energy expenditure and body mass compared with littermate controls, along with a relative reduction in lean mass but increase in fat mass. Brown adipose tissue showed a process of whitening, in line with lower body surface temperature and lesser ability to cope with cold challenge. Mutant mice had dysregulated plasma glucose, delayed glucose clearance and a lesser ability to regulate energy sources when switching from the fed to fasted state, while liver investigations indicated metabolite accumulation and altered expression of peroxisome proliferator–activated receptor and Fgf21-controlled pathways. Together, these shed light on the mechanisms and adaptations behind energy imbalance in methylmalonic aciduria and provide insight into metabolic responses to chronic energy shortage, which may have important implications for disease understanding and patient management.
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spelling pubmed-104604892023-08-28 Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria Lucienne, Marie Gerlini, Raffaele Rathkolb, Birgit Calzada-Wack, Julia Forny, Patrick Wueest, Stephan Kaech, Andres Traversi, Florian Forny, Merima Bürer, Céline Aguilar-Pimentel, Antonio Irmler, Martin Beckers, Johannes Sauer, Sven Kölker, Stefan Dewulf, Joseph P Bommer, Guido T Hoces, Daniel Gailus-Durner, Valerie Fuchs, Helmut Rozman, Jan Froese, D Sean Baumgartner, Matthias R de Angelis, Martin Hrabě Hum Mol Genet Original Article Inherited disorders of mitochondrial metabolism, including isolated methylmalonic aciduria, present unique challenges to energetic homeostasis by disrupting energy-producing pathways. To better understand global responses to energy shortage, we investigated a hemizygous mouse model of methylmalonyl-CoA mutase (Mmut)–type methylmalonic aciduria. We found Mmut mutant mice to have reduced appetite, energy expenditure and body mass compared with littermate controls, along with a relative reduction in lean mass but increase in fat mass. Brown adipose tissue showed a process of whitening, in line with lower body surface temperature and lesser ability to cope with cold challenge. Mutant mice had dysregulated plasma glucose, delayed glucose clearance and a lesser ability to regulate energy sources when switching from the fed to fasted state, while liver investigations indicated metabolite accumulation and altered expression of peroxisome proliferator–activated receptor and Fgf21-controlled pathways. Together, these shed light on the mechanisms and adaptations behind energy imbalance in methylmalonic aciduria and provide insight into metabolic responses to chronic energy shortage, which may have important implications for disease understanding and patient management. Oxford University Press 2023-06-27 /pmc/articles/PMC10460489/ /pubmed/37369025 http://dx.doi.org/10.1093/hmg/ddad100 Text en © The Author(s) 2023. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Lucienne, Marie
Gerlini, Raffaele
Rathkolb, Birgit
Calzada-Wack, Julia
Forny, Patrick
Wueest, Stephan
Kaech, Andres
Traversi, Florian
Forny, Merima
Bürer, Céline
Aguilar-Pimentel, Antonio
Irmler, Martin
Beckers, Johannes
Sauer, Sven
Kölker, Stefan
Dewulf, Joseph P
Bommer, Guido T
Hoces, Daniel
Gailus-Durner, Valerie
Fuchs, Helmut
Rozman, Jan
Froese, D Sean
Baumgartner, Matthias R
de Angelis, Martin Hrabě
Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
title Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
title_full Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
title_fullStr Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
title_full_unstemmed Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
title_short Insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
title_sort insights into energy balance dysregulation from a mouse model of methylmalonic aciduria
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10460489/
https://www.ncbi.nlm.nih.gov/pubmed/37369025
http://dx.doi.org/10.1093/hmg/ddad100
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