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Dexamethasone-induced muscular atrophy is mediated by functional expression of connexin-based hemichannels

  • Luis A. Cea
    ,
  • ,
  • Carlos Puebla
    ,
  • Aníbal A. Vargas
    ,
  • Bruno A. Cisterna
    ,
  • Rosalba Escamilla
  • Universidad de Chile
    ,
  • Pontificia Universidad Católica de Chile
    ,
  • Centro Interdisciplinario de Neurociencias de Valparaíso
Research Output: Contribution to journal Article Peer review

Open Access

Publication Information

Tipo di output

Research Output: Contribution to journal Article Peer review

Lingua originale

English

Pagine da-a (Numero di pagine)

Pagine 1891-1899 (9 pagine)

Rivista (volume, numero edizione)

Biochimica et Biophysica Acta - Molecular Basis of Disease (Volume 1862, Edizione 10)

Attività cardine della pubblicazione

  • Published - 01/10/2016

Stato pubblicazione

Published - 01/10/2016

ISSN

0925-4439

Publication IDs

  • Scopus: 84979600160

Abstract

Long-term treatment with high glucocorticoid doses induces skeletal muscle atrophy. However, the molecular mechanism of such atrophy remains unclear. We evaluated the possible involvement of connexin-based hemichannels (Cx HCs) in muscle atrophy induced by dexamethasone (DEX), a synthetic glucocorticoid, on control (Cx43fl/flCx45fl/fl) and Cx43/Cx45 expression-deficient (Cx43fl/flCx45fl/fl:Myo-Cre) skeletal myofibers. Myofibers of Cx43fl/flCx45fl/fl mice treated with DEX (5 h) expressed several proteins that form non-selective membrane channels (Cx39, Cx43, Cx45, Panx1, P2X7 receptor and TRPV2). After 5 h DEX treatment in vivo, myofibers of Cx43fl/flCx45fl/fl mice showed Evans blue uptake, which was absent in myofibers of Cx43fl/flCx45fl/fl:Myo-Cre mice. Similar results were obtained in vitro using ethidium as an HC permeability probe, and DEX-induced dye uptake in control myofibers was blocked by P2X7 receptor inhibitors. DEX also induced a significant increase in basal intracellular Ca2 + signal and a reduction in resting membrane potential in Cx43fl/flCx45fl/fl myofibers, changes that were not elicited by myofibers deficient in Cx43/Cx45 expression. Moreover, treatment with DEX induced NFκB activation and increased mRNA levels of TNF-α in control but not in Cx43/Cx45 expression-deficient myofibers. Finally, a prolonged DEX treatment (7 days) increased atrogin-1 and Murf-1 and reduced the cross sectional area of Cx43fl/flCx45fl/fl myofibers, but these parameters remained unaffected in Cx43fl/flCx45fl/fl:Myo-Cre myofibers. Therefore, DEX-induced expression of Cx43 and Cx45 plays a critical role in early sarcolemma changes that lead to atrophy. Consequently, this side effect of chronic glucocorticoid treatment might be avoided by co-administration with a Cx HC blocker.