To determine the role of mutant SOD1 gene (SOD1(G93A)) on muscle cell differentiation, we derived C2C12 muscle cell lines carrying a stably transfected SOD1(G93A) gene under the control of a myosin light chain (MLC) promoter-enhancer cassette. Expression of MLC/SOD1(G93A) in C2C12 cells resulted in dramatic inhibition of myoblast differentiation. Transfected SOD1(G93A) gene expression in postmitotic skeletal myocytes downregulated the expression of relevant markers of committed and differentiated myoblasts such as MyoD, Myogenin, MRF4, and the muscle specific miRNA expression. The inhibitory effects of SOD1(G93A) gene on myogenic program perturbed Akt/p70 and MAPK signaling pathways which promote differentiation cascade. Of note, the inhibition of the myogenic program, by transfected SOD1(G93A) gene expression, impinged also the identity of myogenic cells. Expression of MLC/SOD1(G93A) in C2C12 myogenic cells promoted a fibro-adipogenic progenitors (FAPs) phenotype, upregulating HDAC4 protein and preventing the myogenic commitment complex BAF60C-SWI/SNF. We thus identified potential molecular mediators of the inhibitory effects of SOD1(G93A) on myogenic program and disclosed potential signaling, activated by SOD1(G93A), that affect the identity of the myogenic cell population.

Postmitotic expression of SOD1G93A gene affects the identity of myogenic cells and inhibits myoblasts differentiation / Martini, Martina; Dobrowolny, Gabriella; Aucello, Michela; Musaro', Antonio. - In: MEDIATORS OF INFLAMMATION. - ISSN 0962-9351. - STAMPA. - 2015:(2015), pp. 1-14. [10.1155/2015/537853]

Postmitotic expression of SOD1G93A gene affects the identity of myogenic cells and inhibits myoblasts differentiation

MARTINI, MARTINA;DOBROWOLNY, Gabriella;MUSARO', Antonio
2015

Abstract

To determine the role of mutant SOD1 gene (SOD1(G93A)) on muscle cell differentiation, we derived C2C12 muscle cell lines carrying a stably transfected SOD1(G93A) gene under the control of a myosin light chain (MLC) promoter-enhancer cassette. Expression of MLC/SOD1(G93A) in C2C12 cells resulted in dramatic inhibition of myoblast differentiation. Transfected SOD1(G93A) gene expression in postmitotic skeletal myocytes downregulated the expression of relevant markers of committed and differentiated myoblasts such as MyoD, Myogenin, MRF4, and the muscle specific miRNA expression. The inhibitory effects of SOD1(G93A) gene on myogenic program perturbed Akt/p70 and MAPK signaling pathways which promote differentiation cascade. Of note, the inhibition of the myogenic program, by transfected SOD1(G93A) gene expression, impinged also the identity of myogenic cells. Expression of MLC/SOD1(G93A) in C2C12 myogenic cells promoted a fibro-adipogenic progenitors (FAPs) phenotype, upregulating HDAC4 protein and preventing the myogenic commitment complex BAF60C-SWI/SNF. We thus identified potential molecular mediators of the inhibitory effects of SOD1(G93A) on myogenic program and disclosed potential signaling, activated by SOD1(G93A), that affect the identity of the myogenic cell population.
2015
immunology; cell biology; SOD1; muscle differentiation; oxidative stress
01 Pubblicazione su rivista::01a Articolo in rivista
Postmitotic expression of SOD1G93A gene affects the identity of myogenic cells and inhibits myoblasts differentiation / Martini, Martina; Dobrowolny, Gabriella; Aucello, Michela; Musaro', Antonio. - In: MEDIATORS OF INFLAMMATION. - ISSN 0962-9351. - STAMPA. - 2015:(2015), pp. 1-14. [10.1155/2015/537853]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/822582
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