4.8 Article

De novo expression of connexin hemichannels in denervated fast skeletal muscles leads to atrophy

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1312331110

关键词

connexons; membrane leakage; purinergic receptors; phosphorylated p65; inflammation

资金

  1. Fondo Nacional de Desarrollo Cientifico y Tecnologico [1111033, 1100850]
  2. Comision Nacional de Ciencia y Tecnologia-Deutscher Akademischer Austausch Dienst [2009-187]
  3. German Research Foundation [Wi270/33-1, Sonderforschungsbereich 645 B2]
  4. Fondo de Fomento al Desarrollo Cientifico y Tecnologico [D07I1086]
  5. Chilean Science Millennium Institute [P09-022-F]
  6. Department of Veterans Affairs Rehabilitation Research and Development Service [B9212C, B4616]

向作者/读者索取更多资源

Denervation of skeletal muscles induces atrophy, preceded by changes in sarcolemma permeability of causes not yet completely understood. Here, we show that denervation-induced Evans blue dye uptake in vivo of fast, but not slow, myofibers was acutely inhibited by connexin (Cx) hemichannel/pannexin1 (Panx1) channel and purinergic ionotropic P2X(7) receptor (P2X(7)R) blockers. Denervated myofibers showed up-regulation of Panx1 and de novo expression of Cx39, Cx43, and Cx45 hemichannels as well as P2X(7)Rs and transient receptor potential subfamily V, member 2, channels, all of which are permeable to small molecules. The sarcolemma of freshly isolated WT myofibers from denervated muscles also showed high hemichannel-mediated permeability that was slightly reduced by blockade of Panx1 channels or the lack of Panx1 expression, but was completely inhibited by Cx hemichannel or P2X(7)R blockers, as well as by degradation of extracellular ATP. However, inhibition of transient receptor potential subfamily V, member 2, channels had no significant effect on membrane permeability. Moreover, activation of the transcription factor NF kappa B and higher mRNA levels of proinflammatory cytokines (TNF-alpha and IL-1 beta) were found in denervated WT but not Cx43/Cx45-deficient muscles. The atrophy observed after 7 d of denervation was drastically reduced in Cx43/Cx45-deficient but not Panx1-deficient muscles. Therefore, expression of Cx hemichannels and P2X(7)R promotes a feed-forward mechanism activated by extracellular ATP, most likely released through hemichannels, that activates the inflammasome. Consequently, Cx hemichannels are potential targets for new therapeutic agents to prevent or reduce muscle atrophy induced by denervation of diverse etiologies.

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