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SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells

The small-conductance, Ca(2+)-activated K(+) (SK) channel subtype SK2 regulates the spike rate and firing frequency, as well as Ca(2+) transients in Purkinje cells (PCs). To understand the molecular basis by which SK2 channels mediate these functions, we analyzed the exact location and densities of...

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Autores principales: Luján, Rafael, Aguado, Carolina, Ciruela, Francisco, Arus, Xavier Morató, Martín-Belmonte, Alejandro, Alfaro-Ruiz, Rocío, Martínez-Gómez, Jesús, de la Ossa, Luis, Watanabe, Masahiko, Adelman, John P., Shigemoto, Ryuichi, Fukazawa, Yugo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156379/
https://www.ncbi.nlm.nih.gov/pubmed/30283304
http://dx.doi.org/10.3389/fncel.2018.00311
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author Luján, Rafael
Aguado, Carolina
Ciruela, Francisco
Arus, Xavier Morató
Martín-Belmonte, Alejandro
Alfaro-Ruiz, Rocío
Martínez-Gómez, Jesús
de la Ossa, Luis
Watanabe, Masahiko
Adelman, John P.
Shigemoto, Ryuichi
Fukazawa, Yugo
author_facet Luján, Rafael
Aguado, Carolina
Ciruela, Francisco
Arus, Xavier Morató
Martín-Belmonte, Alejandro
Alfaro-Ruiz, Rocío
Martínez-Gómez, Jesús
de la Ossa, Luis
Watanabe, Masahiko
Adelman, John P.
Shigemoto, Ryuichi
Fukazawa, Yugo
author_sort Luján, Rafael
collection PubMed
description The small-conductance, Ca(2+)-activated K(+) (SK) channel subtype SK2 regulates the spike rate and firing frequency, as well as Ca(2+) transients in Purkinje cells (PCs). To understand the molecular basis by which SK2 channels mediate these functions, we analyzed the exact location and densities of SK2 channels along the neuronal surface of the mouse cerebellar PCs using SDS-digested freeze-fracture replica labeling (SDS-FRL) of high sensitivity combined with quantitative analyses. Immunogold particles for SK2 were observed on post- and pre-synaptic compartments showing both scattered and clustered distribution patterns. We found an axo-somato-dendritic gradient of the SK2 particle density increasing 12-fold from soma to dendritic spines. Using two different immunogold approaches, we also found that SK2 immunoparticles were frequently adjacent to, but never overlap with, the postsynaptic density of excitatory synapses in PC spines. Co-immunoprecipitation analysis demonstrated that SK2 channels form macromolecular complexes with two types of proteins that mobilize Ca(2+): Ca(V)2.1 channels and mGlu(1α) receptors in the cerebellum. Freeze-fracture replica double-labeling showed significant co-clustering of particles for SK2 with those for Ca(V)2.1 channels and mGlu(1α) receptors. SK2 channels were also detected at presynaptic sites, mostly at the presynaptic active zone (AZ), where they are close to Ca(V)2.1 channels, though they are not significantly co-clustered. These data demonstrate that SK2 channels located in different neuronal compartments can associate with distinct proteins mobilizing Ca(2+), and suggest that the ultrastructural association of SK2 with Ca(V)2.1 and mGlu(1α) provides the mechanism that ensures voltage (excitability) regulation by distinct intracellular Ca(2+) transients in PCs.
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spelling pubmed-61563792018-10-03 SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells Luján, Rafael Aguado, Carolina Ciruela, Francisco Arus, Xavier Morató Martín-Belmonte, Alejandro Alfaro-Ruiz, Rocío Martínez-Gómez, Jesús de la Ossa, Luis Watanabe, Masahiko Adelman, John P. Shigemoto, Ryuichi Fukazawa, Yugo Front Cell Neurosci Neuroscience The small-conductance, Ca(2+)-activated K(+) (SK) channel subtype SK2 regulates the spike rate and firing frequency, as well as Ca(2+) transients in Purkinje cells (PCs). To understand the molecular basis by which SK2 channels mediate these functions, we analyzed the exact location and densities of SK2 channels along the neuronal surface of the mouse cerebellar PCs using SDS-digested freeze-fracture replica labeling (SDS-FRL) of high sensitivity combined with quantitative analyses. Immunogold particles for SK2 were observed on post- and pre-synaptic compartments showing both scattered and clustered distribution patterns. We found an axo-somato-dendritic gradient of the SK2 particle density increasing 12-fold from soma to dendritic spines. Using two different immunogold approaches, we also found that SK2 immunoparticles were frequently adjacent to, but never overlap with, the postsynaptic density of excitatory synapses in PC spines. Co-immunoprecipitation analysis demonstrated that SK2 channels form macromolecular complexes with two types of proteins that mobilize Ca(2+): Ca(V)2.1 channels and mGlu(1α) receptors in the cerebellum. Freeze-fracture replica double-labeling showed significant co-clustering of particles for SK2 with those for Ca(V)2.1 channels and mGlu(1α) receptors. SK2 channels were also detected at presynaptic sites, mostly at the presynaptic active zone (AZ), where they are close to Ca(V)2.1 channels, though they are not significantly co-clustered. These data demonstrate that SK2 channels located in different neuronal compartments can associate with distinct proteins mobilizing Ca(2+), and suggest that the ultrastructural association of SK2 with Ca(V)2.1 and mGlu(1α) provides the mechanism that ensures voltage (excitability) regulation by distinct intracellular Ca(2+) transients in PCs. Frontiers Media S.A. 2018-09-19 /pmc/articles/PMC6156379/ /pubmed/30283304 http://dx.doi.org/10.3389/fncel.2018.00311 Text en Copyright © 2018 Luján, Aguado, Ciruela, Arus, Martín-Belmonte, Alfaro-Ruiz, Martínez-Gómez, de la Ossa, Watanabe, Adelman, Shigemoto and Fukazawa. 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(s) 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
Luján, Rafael
Aguado, Carolina
Ciruela, Francisco
Arus, Xavier Morató
Martín-Belmonte, Alejandro
Alfaro-Ruiz, Rocío
Martínez-Gómez, Jesús
de la Ossa, Luis
Watanabe, Masahiko
Adelman, John P.
Shigemoto, Ryuichi
Fukazawa, Yugo
SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells
title SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells
title_full SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells
title_fullStr SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells
title_full_unstemmed SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells
title_short SK2 Channels Associate With mGlu(1α) Receptors and Ca(V)2.1 Channels in Purkinje Cells
title_sort sk2 channels associate with mglu(1α) receptors and ca(v)2.1 channels in purkinje cells
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156379/
https://www.ncbi.nlm.nih.gov/pubmed/30283304
http://dx.doi.org/10.3389/fncel.2018.00311
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