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Flvcr1a deficiency promotes heme-based energy metabolism dysfunction in skeletal muscle

Articolo
Data di Pubblicazione:
2024
Citazione:
Flvcr1a deficiency promotes heme-based energy metabolism dysfunction in skeletal muscle / M. Mistretta, V. Fiorito, A.L. Allocco, G. Ammirata, M.Y. Hsu, S. Digiovanni, M. Belicchi, L. Napoli, M. Ripolone, E. Trombetta, P. Mauri, A. Farini, M. Meregalli, C. Villa, P.E. Porporato, B. Miniscalco, S.G. Crich, C. Riganti, Y. Torrente, E. Tolosano. - In: CELL REPORTS. - ISSN 2211-1247. - 43:3(2024 Mar 26), pp. 113854.1-113854.21. [10.1016/j.celrep.2024.113854]
Abstract:
The definition of cell metabolic profile is essential to ensure skeletal muscle fiber heterogeneity and to achieve a proper equilibrium between the self-renewal and commitment of satellite stem cells. Heme sustains several biological functions, including processes profoundly implicated with cell metabolism. The skeletal muscle is a significant heme-producing body compartment, but the consequences of impaired heme homeostasis on this tissue have been poorly investigated. Here, we generate a skeletal-muscle-specific feline leukemia virus subgroup C receptor 1a (FLVCR1a) knockout mouse model and show that, by sustaining heme synthesis, FLVCR1a contributes to determine the energy phenotype in skeletal muscle cells and to modulate satellite cell differentiation and muscle regeneration.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
ALAS1; CP: Metabolism; FLVCR1; FLVCR1a; heme; metabolism; skeletal muscle;
Elenco autori:
M. Mistretta, V. Fiorito, A.L. Allocco, G. Ammirata, M.Y. Hsu, S. Digiovanni, M. Belicchi, L. Napoli, M. Ripolone, E. Trombetta, P. Mauri, A. Farini, M. Meregalli, C. Villa, P.E. Porporato, B. Miniscalco, S.G. Crich, C. Riganti, Y. Torrente, E. Tolosano
Autori di Ateneo:
TORRENTE YVAN ( autore )
VILLA CHIARA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1079608
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1079608/2484352/1-s2.0-S2211124724001827-main.pdf
Progetto:
Disentangling genetic, epigenetic and hormonal regulation of Fe/heme metabolism in the gender-specific nature of NAFLD (DEFENDER)
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Settore MED/26 - Neurologia
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