Role of connexin 32 hemichannels in the release of ATP from peripheral nerves
Autor: | Luis C. Barrio, Rafel Puchal, Xenia Grandes, Mireia Martín-Satué, Carles Solsona, Artur Llobet, Bulat A. Ziganshin, Ezequiel Mas del Molino, Laia Bahima, Anna Nualart-Marti, Daniel González-Nieto, Ilaria Fasciani |
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Rok vydání: | 2013 |
Předmět: |
Nervous system
medicine.medical_specialty education.field_of_study urogenital system Purinergic receptor Gap junction Connexin Biology Exocytosis Cell biology Cellular and Molecular Neuroscience medicine.anatomical_structure Endocrinology Neurology Peripheral nervous system Internal medicine Extracellular medicine Connexin 32 education |
Zdroj: | Glia. 61:1976-1989 |
ISSN: | 0894-1491 |
DOI: | 10.1002/glia.22568 |
Popis: | Extracellular purines elicit strong signals in the nervous system. Adenosine-5'-triphosphate (ATP) does not spontaneously cross the plasma membrane, and nervous cells secrete ATP by exocytosis or through plasma membrane proteins such as connexin hemichannels. Using a combination of imaging, luminescence and electrophysiological techniques, we explored the possibility that Connexin 32 (Cx32), expressed in Schwann cells (SCs) myelinating the peripheral nervous system could be an important source of ATP in peripheral nerves. We triggered the release of ATP in vivo from mice sciatic nerves by electrical stimulation and from cultured SCs by high extracellular potassium concentration-evoked depolarization. No ATP was detected in the extracellular media after treatment of the sciatic nerve with Octanol or Carbenoxolone, and ATP release was significantly inhibited after silencing Cx32 from SCs cultures. We investigated the permeability of Cx32 to ATP by expressing Cx32 hemichannels in Xenopus laevis oocytes. We found that ATP release is coupled to the inward tail current generated after the activation of Cx32 hemichannels by depolarization pulses, and it is sensitive to low extracellular calcium concentrations. Moreover, we found altered ATP release in mutated Cx32 hemichannels related to the X-linked form of Charcot-Marie-Tooth disease, suggesting that purinergic-mediated signaling in peripheral nerves could underlie the physiopathology of this neuropathy. |
Databáze: | OpenAIRE |
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