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Clustering of neuronal potassium channels is independent of their interaction with PSD-95

Voltage-dependent potassium channels regulate membrane excitability and cell–cell communication in the mammalian nervous system, and are found highly localized at distinct neuronal subcellular sites. Kv1 (mammalian Shaker family) potassium channels and the neurexin Caspr2, both of which contain COOH...

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Autores principales: Rasband, Matthew N., Park, Eunice W., Zhen, Dongkai, Arbuckle, Margaret I., Poliak, Sebastian, Peles, Elior, Grant, Seth G.N., Trimmer, James S.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2002
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2173099/
https://www.ncbi.nlm.nih.gov/pubmed/12438413
http://dx.doi.org/10.1083/jcb.200206024
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author Rasband, Matthew N.
Park, Eunice W.
Zhen, Dongkai
Arbuckle, Margaret I.
Poliak, Sebastian
Peles, Elior
Grant, Seth G.N.
Trimmer, James S.
author_facet Rasband, Matthew N.
Park, Eunice W.
Zhen, Dongkai
Arbuckle, Margaret I.
Poliak, Sebastian
Peles, Elior
Grant, Seth G.N.
Trimmer, James S.
author_sort Rasband, Matthew N.
collection PubMed
description Voltage-dependent potassium channels regulate membrane excitability and cell–cell communication in the mammalian nervous system, and are found highly localized at distinct neuronal subcellular sites. Kv1 (mammalian Shaker family) potassium channels and the neurexin Caspr2, both of which contain COOH-terminal PDZ domain binding peptide motifs, are found colocalized at high density at juxtaparanodes flanking nodes of Ranvier of myelinated axons. The PDZ domain–containing protein PSD-95, which clusters Kv1 potassium channels in heterologous cells, has been proposed to play a major role in potassium channel clustering in mammalian neurons. Here, we show that PSD-95 colocalizes precisely with Kv1 potassium channels and Caspr2 at juxtaparanodes, and that a macromolecular complex of Kv1 channels and PSD-95 can be immunopurified from mammalian brain and spinal cord. Surprisingly, we find that the high density clustering of Kv1 channels and Caspr2 at juxtaparanodes is normal in a mutant mouse lacking juxtaparanodal PSD-95, and that the indirect interaction between Kv1 channels and Caspr2 is maintained in these mutant mice. These data suggest that the primary function of PSD-95 at juxtaparanodes lies outside of its accepted role in mediating the high density clustering of Kv1 potassium channels at these sites.
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spelling pubmed-21730992008-05-01 Clustering of neuronal potassium channels is independent of their interaction with PSD-95 Rasband, Matthew N. Park, Eunice W. Zhen, Dongkai Arbuckle, Margaret I. Poliak, Sebastian Peles, Elior Grant, Seth G.N. Trimmer, James S. J Cell Biol Article Voltage-dependent potassium channels regulate membrane excitability and cell–cell communication in the mammalian nervous system, and are found highly localized at distinct neuronal subcellular sites. Kv1 (mammalian Shaker family) potassium channels and the neurexin Caspr2, both of which contain COOH-terminal PDZ domain binding peptide motifs, are found colocalized at high density at juxtaparanodes flanking nodes of Ranvier of myelinated axons. The PDZ domain–containing protein PSD-95, which clusters Kv1 potassium channels in heterologous cells, has been proposed to play a major role in potassium channel clustering in mammalian neurons. Here, we show that PSD-95 colocalizes precisely with Kv1 potassium channels and Caspr2 at juxtaparanodes, and that a macromolecular complex of Kv1 channels and PSD-95 can be immunopurified from mammalian brain and spinal cord. Surprisingly, we find that the high density clustering of Kv1 channels and Caspr2 at juxtaparanodes is normal in a mutant mouse lacking juxtaparanodal PSD-95, and that the indirect interaction between Kv1 channels and Caspr2 is maintained in these mutant mice. These data suggest that the primary function of PSD-95 at juxtaparanodes lies outside of its accepted role in mediating the high density clustering of Kv1 potassium channels at these sites. The Rockefeller University Press 2002-11-25 /pmc/articles/PMC2173099/ /pubmed/12438413 http://dx.doi.org/10.1083/jcb.200206024 Text en Copyright © 2002, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Rasband, Matthew N.
Park, Eunice W.
Zhen, Dongkai
Arbuckle, Margaret I.
Poliak, Sebastian
Peles, Elior
Grant, Seth G.N.
Trimmer, James S.
Clustering of neuronal potassium channels is independent of their interaction with PSD-95
title Clustering of neuronal potassium channels is independent of their interaction with PSD-95
title_full Clustering of neuronal potassium channels is independent of their interaction with PSD-95
title_fullStr Clustering of neuronal potassium channels is independent of their interaction with PSD-95
title_full_unstemmed Clustering of neuronal potassium channels is independent of their interaction with PSD-95
title_short Clustering of neuronal potassium channels is independent of their interaction with PSD-95
title_sort clustering of neuronal potassium channels is independent of their interaction with psd-95
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2173099/
https://www.ncbi.nlm.nih.gov/pubmed/12438413
http://dx.doi.org/10.1083/jcb.200206024
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