In Duchenne muscular dystrophy (DMD), the absence of the dystrophin protein causes a variety of poorly understood secondary effects. Notably, muscle fibers of dystrophic individuals are characterized by mitochondrial dysfunctions, as revealed by a reduced ATP production rate and by defective oxidative phosphorylation. Here, we show that in a mouse model of DMD (mdx), fibro/ adipogenic progenitors (FAPs) are characterized by a dysfunctional mitochondrial metabolism which correlates with increased adipogenic potential. Using high-sensitivity mass spectrometry- based proteomics, we report that a short-term high-fat diet (HFD) reprograms dystrophic FAP metabolism in vivo. By combining our proteomic dataset with a literature-derived signaling network, we revealed that HFD modulates the β-catenin-follistatin axis. These changes are accompanied by significant amelioration of the histological phenotype in dystrophic mice. Transplantation of purified FAPs from HFD-fed mice into the muscles of dystrophic recipients demonstrates that modulation of FAP metabolism can be functional to ameliorate the dystrophic phenotype. Our study supports metabolic reprogramming of muscle interstitial progenitor cells as a novel approach to alleviate some of the adverse outcomes of DMD.

Metabolic reprogramming of fibro/adipogenic progenitors facilitates muscle regeneration / Reggio, A.; Rosina, M.; Krahmer, N.; Palma, A.; Petrilli, L. L.; Maiolatesi, G.; Massacci, G.; Salvatori, I.; Valle, C.; Testa, S.; Gargioli, C.; Fuoco, C.; Castagnoli, L.; Cesareni, G.; Sacco, F.. - In: LIFE SCIENCE ALLIANCE. - ISSN 2575-1077. - 3:3(2020), pp. 1-24. [10.26508/lsa.202000660]

Metabolic reprogramming of fibro/adipogenic progenitors facilitates muscle regeneration

Palma A.;Massacci G.;Salvatori I.
Membro del Collaboration Group
;
Gargioli C.;Castagnoli L.
;
Cesareni G.
;
2020

Abstract

In Duchenne muscular dystrophy (DMD), the absence of the dystrophin protein causes a variety of poorly understood secondary effects. Notably, muscle fibers of dystrophic individuals are characterized by mitochondrial dysfunctions, as revealed by a reduced ATP production rate and by defective oxidative phosphorylation. Here, we show that in a mouse model of DMD (mdx), fibro/ adipogenic progenitors (FAPs) are characterized by a dysfunctional mitochondrial metabolism which correlates with increased adipogenic potential. Using high-sensitivity mass spectrometry- based proteomics, we report that a short-term high-fat diet (HFD) reprograms dystrophic FAP metabolism in vivo. By combining our proteomic dataset with a literature-derived signaling network, we revealed that HFD modulates the β-catenin-follistatin axis. These changes are accompanied by significant amelioration of the histological phenotype in dystrophic mice. Transplantation of purified FAPs from HFD-fed mice into the muscles of dystrophic recipients demonstrates that modulation of FAP metabolism can be functional to ameliorate the dystrophic phenotype. Our study supports metabolic reprogramming of muscle interstitial progenitor cells as a novel approach to alleviate some of the adverse outcomes of DMD.
2020
adipogenesis; animals; cell differentiation; cells; cultured; diet; high-fat; disease models; animal; dystrophin; male; inbred c57bl; mice; inbred mdx; muscle fibers; skeletal; muscle; skeletal; muscular dystrophy; duchenne; myoblasts; proteomics; regeneration; signal transduction; stem cells
01 Pubblicazione su rivista::01a Articolo in rivista
Metabolic reprogramming of fibro/adipogenic progenitors facilitates muscle regeneration / Reggio, A.; Rosina, M.; Krahmer, N.; Palma, A.; Petrilli, L. L.; Maiolatesi, G.; Massacci, G.; Salvatori, I.; Valle, C.; Testa, S.; Gargioli, C.; Fuoco, C.; Castagnoli, L.; Cesareni, G.; Sacco, F.. - In: LIFE SCIENCE ALLIANCE. - ISSN 2575-1077. - 3:3(2020), pp. 1-24. [10.26508/lsa.202000660]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1557509
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