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Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons

Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid involved in numerous physiological and pathophysiological processes. We have previously reported a S1P-induced nocifensive response in mice by excitation of sensory neurons via activation of an excitatory chloride current. The underlying mole...

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Autores principales: Qi, Yanmei, Mair, Norbert, Kummer, Kai K., Leitner, Michael G., Camprubí-Robles, María, Langeslag, Michiel, Kress, Michaela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811518/
https://www.ncbi.nlm.nih.gov/pubmed/29479306
http://dx.doi.org/10.3389/fnmol.2018.00033
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author Qi, Yanmei
Mair, Norbert
Kummer, Kai K.
Leitner, Michael G.
Camprubí-Robles, María
Langeslag, Michiel
Kress, Michaela
author_facet Qi, Yanmei
Mair, Norbert
Kummer, Kai K.
Leitner, Michael G.
Camprubí-Robles, María
Langeslag, Michiel
Kress, Michaela
author_sort Qi, Yanmei
collection PubMed
description Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid involved in numerous physiological and pathophysiological processes. We have previously reported a S1P-induced nocifensive response in mice by excitation of sensory neurons via activation of an excitatory chloride current. The underlying molecular mechanism for the S1P-induced chloride conductance remains elusive. In the present study, we identified two CLCN voltage-gated chloride channels, CLCN3 and CLCN5, which mediated a S1P-induced excitatory Cl(−) current in sensory neurons by combining RNA-seq, adenovirus-based gene silencing and whole-cell electrophysiological voltage-clamp recordings. Downregulation of CLCN3 and CLCN5 channels by adenovirus-mediated delivery of shRNA dramatically reduced S1P-induced Cl(−) current and membrane depolarization in sensory neurons. The mechanism of S1P-induced activation of the chloride current involved Rho GTPase but not Rho-associated protein kinase. Although S1P-induced potentiation of TRPV1-mediated ionic currents also involved Rho-dependent process, the lack of correlation of the S1P-activated Cl(−) current and the potentiation of TRPV1 by S1P suggests that CLCN3 and CLCN5 are necessary components for S1P-induced excitatory Cl(−) currents but not for the amplification of TRPV1-mediated currents in sensory neurons. This study provides a novel mechanistic insight into the importance of bioactive sphingolipids in nociception.
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spelling pubmed-58115182018-02-23 Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons Qi, Yanmei Mair, Norbert Kummer, Kai K. Leitner, Michael G. Camprubí-Robles, María Langeslag, Michiel Kress, Michaela Front Mol Neurosci Neuroscience Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid involved in numerous physiological and pathophysiological processes. We have previously reported a S1P-induced nocifensive response in mice by excitation of sensory neurons via activation of an excitatory chloride current. The underlying molecular mechanism for the S1P-induced chloride conductance remains elusive. In the present study, we identified two CLCN voltage-gated chloride channels, CLCN3 and CLCN5, which mediated a S1P-induced excitatory Cl(−) current in sensory neurons by combining RNA-seq, adenovirus-based gene silencing and whole-cell electrophysiological voltage-clamp recordings. Downregulation of CLCN3 and CLCN5 channels by adenovirus-mediated delivery of shRNA dramatically reduced S1P-induced Cl(−) current and membrane depolarization in sensory neurons. The mechanism of S1P-induced activation of the chloride current involved Rho GTPase but not Rho-associated protein kinase. Although S1P-induced potentiation of TRPV1-mediated ionic currents also involved Rho-dependent process, the lack of correlation of the S1P-activated Cl(−) current and the potentiation of TRPV1 by S1P suggests that CLCN3 and CLCN5 are necessary components for S1P-induced excitatory Cl(−) currents but not for the amplification of TRPV1-mediated currents in sensory neurons. This study provides a novel mechanistic insight into the importance of bioactive sphingolipids in nociception. Frontiers Media S.A. 2018-02-09 /pmc/articles/PMC5811518/ /pubmed/29479306 http://dx.doi.org/10.3389/fnmol.2018.00033 Text en Copyright © 2018 Qi, Mair, Kummer, Leitner, Camprubí-Robles, Langeslag and Kress. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Qi, Yanmei
Mair, Norbert
Kummer, Kai K.
Leitner, Michael G.
Camprubí-Robles, María
Langeslag, Michiel
Kress, Michaela
Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons
title Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons
title_full Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons
title_fullStr Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons
title_full_unstemmed Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons
title_short Identification of Chloride Channels CLCN3 and CLCN5 Mediating the Excitatory Cl(−) Currents Activated by Sphingosine-1-Phosphate in Sensory Neurons
title_sort identification of chloride channels clcn3 and clcn5 mediating the excitatory cl(−) currents activated by sphingosine-1-phosphate in sensory neurons
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811518/
https://www.ncbi.nlm.nih.gov/pubmed/29479306
http://dx.doi.org/10.3389/fnmol.2018.00033
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