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Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines

The neuronal actin-binding protein drebrin A forms a stable structure with F-actin in dendritic spines. NMDA receptor activation causes an exodus of F-actin bound by drebrin A (DA-actin) from dendritic spines, suggesting a pivotal role for DA-actin exodus in synaptic plasticity. We quantitatively as...

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Autores principales: Mizui, Toshiyuki, Sekino, Yuko, Yamazaki, Hiroyuki, Ishizuka, Yuta, Takahashi, Hideto, Kojima, Nobuhiko, Kojima, Masami, Shirao, Tomoaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3899004/
https://www.ncbi.nlm.nih.gov/pubmed/24465547
http://dx.doi.org/10.1371/journal.pone.0085367
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author Mizui, Toshiyuki
Sekino, Yuko
Yamazaki, Hiroyuki
Ishizuka, Yuta
Takahashi, Hideto
Kojima, Nobuhiko
Kojima, Masami
Shirao, Tomoaki
author_facet Mizui, Toshiyuki
Sekino, Yuko
Yamazaki, Hiroyuki
Ishizuka, Yuta
Takahashi, Hideto
Kojima, Nobuhiko
Kojima, Masami
Shirao, Tomoaki
author_sort Mizui, Toshiyuki
collection PubMed
description The neuronal actin-binding protein drebrin A forms a stable structure with F-actin in dendritic spines. NMDA receptor activation causes an exodus of F-actin bound by drebrin A (DA-actin) from dendritic spines, suggesting a pivotal role for DA-actin exodus in synaptic plasticity. We quantitatively assessed the extent of DA-actin localization to spines using the spine-dendrite ratio of drebrin A in cultured hippocampal neurons, and found that (1) chemical long-term potentiation (LTP) stimulation induces rapid DA-actin exodus and subsequent DA-actin re-entry in dendritic spines, (2) Ca(2+) influx through NMDA receptors regulates the exodus and the basal accumulation of DA-actin, and (3) the DA-actin exodus is blocked by myosin II ATPase inhibitor, but is not blocked by myosin light chain kinase (MLCK) or Rho-associated kinase (ROCK) inhibitors. These results indicate that myosin II mediates the interaction between NMDA receptor activation and DA-actin exodus in LTP induction. Furthermore, myosin II seems to be activated by a rapid actin-linked mechanism rather than slow MLC phosphorylation. Thus the myosin-II mediated DA-actin exodus might be an initial event in LTP induction, triggering actin polymerization and spine enlargement.
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spelling pubmed-38990042014-01-24 Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines Mizui, Toshiyuki Sekino, Yuko Yamazaki, Hiroyuki Ishizuka, Yuta Takahashi, Hideto Kojima, Nobuhiko Kojima, Masami Shirao, Tomoaki PLoS One Research Article The neuronal actin-binding protein drebrin A forms a stable structure with F-actin in dendritic spines. NMDA receptor activation causes an exodus of F-actin bound by drebrin A (DA-actin) from dendritic spines, suggesting a pivotal role for DA-actin exodus in synaptic plasticity. We quantitatively assessed the extent of DA-actin localization to spines using the spine-dendrite ratio of drebrin A in cultured hippocampal neurons, and found that (1) chemical long-term potentiation (LTP) stimulation induces rapid DA-actin exodus and subsequent DA-actin re-entry in dendritic spines, (2) Ca(2+) influx through NMDA receptors regulates the exodus and the basal accumulation of DA-actin, and (3) the DA-actin exodus is blocked by myosin II ATPase inhibitor, but is not blocked by myosin light chain kinase (MLCK) or Rho-associated kinase (ROCK) inhibitors. These results indicate that myosin II mediates the interaction between NMDA receptor activation and DA-actin exodus in LTP induction. Furthermore, myosin II seems to be activated by a rapid actin-linked mechanism rather than slow MLC phosphorylation. Thus the myosin-II mediated DA-actin exodus might be an initial event in LTP induction, triggering actin polymerization and spine enlargement. Public Library of Science 2014-01-22 /pmc/articles/PMC3899004/ /pubmed/24465547 http://dx.doi.org/10.1371/journal.pone.0085367 Text en © 2014 Mizui et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mizui, Toshiyuki
Sekino, Yuko
Yamazaki, Hiroyuki
Ishizuka, Yuta
Takahashi, Hideto
Kojima, Nobuhiko
Kojima, Masami
Shirao, Tomoaki
Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines
title Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines
title_full Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines
title_fullStr Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines
title_full_unstemmed Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines
title_short Myosin II ATPase Activity Mediates the Long-Term Potentiation-Induced Exodus of Stable F-Actin Bound by Drebrin A from Dendritic Spines
title_sort myosin ii atpase activity mediates the long-term potentiation-induced exodus of stable f-actin bound by drebrin a from dendritic spines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3899004/
https://www.ncbi.nlm.nih.gov/pubmed/24465547
http://dx.doi.org/10.1371/journal.pone.0085367
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