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Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons

RTN1A is a reticulon protein with predominant localization in the endoplasmic reticulum (ER). It was previously shown that RTN1A is expressed in neurons of the mammalian central nervous system but functional information remains sparse. To elucidate the neuronal function of RTN1A, we chose to focus o...

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Autores principales: Kaya, Levent, Meissner, Barbara, Riedl, Maria Christine, Muik, Martin, Schwarzer, Christoph, Ferraguti, Francesco, Sarg, Bettina, Lindner, Herbert, Schweigreiter, Rüdiger, Knaus, Hans-Günther, Romanin, Christoph, Bandtlow, Christine E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Pub. Co 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3636420/
https://www.ncbi.nlm.nih.gov/pubmed/23454728
http://dx.doi.org/10.1016/j.bbamcr.2013.02.012
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author Kaya, Levent
Meissner, Barbara
Riedl, Maria Christine
Muik, Martin
Schwarzer, Christoph
Ferraguti, Francesco
Sarg, Bettina
Lindner, Herbert
Schweigreiter, Rüdiger
Knaus, Hans-Günther
Romanin, Christoph
Bandtlow, Christine E.
author_facet Kaya, Levent
Meissner, Barbara
Riedl, Maria Christine
Muik, Martin
Schwarzer, Christoph
Ferraguti, Francesco
Sarg, Bettina
Lindner, Herbert
Schweigreiter, Rüdiger
Knaus, Hans-Günther
Romanin, Christoph
Bandtlow, Christine E.
author_sort Kaya, Levent
collection PubMed
description RTN1A is a reticulon protein with predominant localization in the endoplasmic reticulum (ER). It was previously shown that RTN1A is expressed in neurons of the mammalian central nervous system but functional information remains sparse. To elucidate the neuronal function of RTN1A, we chose to focus our investigation on identifying possible novel binding partners specifically interacting with the unique N-terminus of RTN1A. Using a nonbiased approach involving GST pull-downs and MS analysis, we identified the intracellular calcium release channel ryanodine receptor 2 (RyR2) as a direct binding partner of RTN1A. The RyR2 binding site was localized to a highly conserved 150-amino acid residue region. RTN1A displays high preference for RyR2 binding in vitro and in vivo and both proteins colocalize in hippocampal neurons and Purkinje cells. Moreover, we demonstrate the precise subcellular localization of RTN1A in Purkinje cells and show that RTN1A inhibits RyR channels in [(3)H]ryanodine binding studies on brain synaptosomes. In a functional assay, RTN1A significantly reduced RyR2-mediated Ca(2 +) oscillations. Thus, RTN1A and RyR2 might act as functional partners in the regulation of cytosolic Ca(2 +) dynamics the in neurons.
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spelling pubmed-36364202013-06-01 Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons Kaya, Levent Meissner, Barbara Riedl, Maria Christine Muik, Martin Schwarzer, Christoph Ferraguti, Francesco Sarg, Bettina Lindner, Herbert Schweigreiter, Rüdiger Knaus, Hans-Günther Romanin, Christoph Bandtlow, Christine E. Biochim Biophys Acta Article RTN1A is a reticulon protein with predominant localization in the endoplasmic reticulum (ER). It was previously shown that RTN1A is expressed in neurons of the mammalian central nervous system but functional information remains sparse. To elucidate the neuronal function of RTN1A, we chose to focus our investigation on identifying possible novel binding partners specifically interacting with the unique N-terminus of RTN1A. Using a nonbiased approach involving GST pull-downs and MS analysis, we identified the intracellular calcium release channel ryanodine receptor 2 (RyR2) as a direct binding partner of RTN1A. The RyR2 binding site was localized to a highly conserved 150-amino acid residue region. RTN1A displays high preference for RyR2 binding in vitro and in vivo and both proteins colocalize in hippocampal neurons and Purkinje cells. Moreover, we demonstrate the precise subcellular localization of RTN1A in Purkinje cells and show that RTN1A inhibits RyR channels in [(3)H]ryanodine binding studies on brain synaptosomes. In a functional assay, RTN1A significantly reduced RyR2-mediated Ca(2 +) oscillations. Thus, RTN1A and RyR2 might act as functional partners in the regulation of cytosolic Ca(2 +) dynamics the in neurons. Elsevier Pub. Co 2013-06 /pmc/articles/PMC3636420/ /pubmed/23454728 http://dx.doi.org/10.1016/j.bbamcr.2013.02.012 Text en © 2013 Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Article
Kaya, Levent
Meissner, Barbara
Riedl, Maria Christine
Muik, Martin
Schwarzer, Christoph
Ferraguti, Francesco
Sarg, Bettina
Lindner, Herbert
Schweigreiter, Rüdiger
Knaus, Hans-Günther
Romanin, Christoph
Bandtlow, Christine E.
Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons
title Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons
title_full Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons
title_fullStr Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons
title_full_unstemmed Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons
title_short Direct association of the reticulon protein RTN1A with the ryanodine receptor 2 in neurons
title_sort direct association of the reticulon protein rtn1a with the ryanodine receptor 2 in neurons
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3636420/
https://www.ncbi.nlm.nih.gov/pubmed/23454728
http://dx.doi.org/10.1016/j.bbamcr.2013.02.012
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