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Fast skeletal myofibers of mdx mouse, model of Duchenne muscular dystrophy, express connexin hemichannels that lead to apoptosis.

Authors :
Cea, Luis
Puebla, Carlos
Cisterna, Bruno
Escamilla, Rosalba
Vargas, Aníbal
Frank, Marina
Martínez-Montero, Paloma
Prior, Carmen
Molano, Jesús
Esteban-Rodríguez, Isabel
Pascual, Ignacio
Gallano, Pía
Lorenzo, Gustavo
Pian, Héctor
Barrio, Luis
Willecke, Klaus
Sáez, Juan
Source :
Cellular & Molecular Life Sciences. Jul2016, Vol. 73 Issue 13, p2583-2599. 17p.
Publication Year :
2016

Abstract

Skeletal muscles of patients with Duchenne muscular dystrophy (DMD) show numerous alterations including inflammation, apoptosis, and necrosis of myofibers. However, the molecular mechanism that explains these changes remains largely unknown. Here, the involvement of hemichannels formed by connexins (Cx HCs) was evaluated in skeletal muscle of mdx mouse model of DMD. Fast myofibers of mdx mice were found to express three connexins (39, 43 and 45) and high sarcolemma permeability, which was absent in myofibers of mdx Cx43Cx45:Myo-Cre mice (deficient in skeletal muscle Cx43/Cx45 expression). These myofibers did not show elevated basal intracellular free Ca levels, immunoreactivity to phosphorylated p65 (active NF-κB), eNOS and annexin V/active Caspase 3 (marker of apoptosis) but presented dystrophin immunoreactivity. Moreover, muscles of mdx Cx43Cx45:Myo-Cre mice exhibited partial decrease of necrotic features (big cells and high creatine kinase levels). Accordingly, these muscles showed similar macrophage infiltration as control mdx muscles. Nonetheless, the hanging test performance of mdx Cx43Cx45:Myo-Cre mice was significantly better than that of control mdx Cx43Cx45 mice. All three Cxs found in skeletal muscles of mdx mice were also detected in fast myofibers of biopsy specimens from patients with muscular dystrophy. Thus, reduction of Cx expression and/or function of Cx HCs may be potential therapeutic approaches to abrogate myofiber apoptosis in DMD. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1420682X
Volume :
73
Issue :
13
Database :
Academic Search Index
Journal :
Cellular & Molecular Life Sciences
Publication Type :
Academic Journal
Accession number :
115928284
Full Text :
https://doi.org/10.1007/s00018-016-2132-2