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Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions

We explored to what extent isoforms of the regulator of excitation-contraction and excitation-transcription coupling, calcium/calmodulin protein kinase II (CaMKII) contribute to the specificity of myocellular calcium sensing between muscle types and whether concentration transients in its autophosph...

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Autores principales: Eilers, Wouter, Gevers, Wouter, van Overbeek, Daniëlle, de Haan, Arnold, Jaspers, Richard T., Hilbers, Peter A., van Riel, Natal, Flück, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4099113/
https://www.ncbi.nlm.nih.gov/pubmed/25054156
http://dx.doi.org/10.1155/2014/943806
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author Eilers, Wouter
Gevers, Wouter
van Overbeek, Daniëlle
de Haan, Arnold
Jaspers, Richard T.
Hilbers, Peter A.
van Riel, Natal
Flück, Martin
author_facet Eilers, Wouter
Gevers, Wouter
van Overbeek, Daniëlle
de Haan, Arnold
Jaspers, Richard T.
Hilbers, Peter A.
van Riel, Natal
Flück, Martin
author_sort Eilers, Wouter
collection PubMed
description We explored to what extent isoforms of the regulator of excitation-contraction and excitation-transcription coupling, calcium/calmodulin protein kinase II (CaMKII) contribute to the specificity of myocellular calcium sensing between muscle types and whether concentration transients in its autophosphorylation can be simulated. CaMKII autophosphorylation at Thr287 was assessed in three muscle compartments of the rat after slow or fast motor unit-type stimulation and was compared against a computational model (CaMuZclE) coupling myocellular calcium dynamics with CaMKII Thr287 phosphorylation. Qualitative differences existed between fast- (gastrocnemius medialis) and slow-type muscle (soleus) for the expression pattern of CaMKII isoforms. Phospho-Thr287 content of δA CaMKII, associated with nuclear functions, demonstrated a transient and compartment-specific increase after excitation, which contrasted to the delayed autophosphorylation of the sarcoplasmic reticulum-associated βM CaMKII. In soleus muscle, excitation-induced δA CaMKII autophosphorylation demonstrated frequency dependence (P = 0.02). In the glycolytic compartment of gastrocnemius medialis, CaMKII autophosphorylation after excitation was blunted. In silico assessment emphasized the importance of mitochondrial calcium buffer capacity for excitation-induced CaMKII autophosphorylation but did not predict its isoform specificity. The findings expose that CaMKII autophosphorylation with paced contractions is regulated in an isoform and muscle type-specific fashion and highlight properties emerging for phenotype-specific regulation of CaMKII.
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spelling pubmed-40991132014-07-22 Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions Eilers, Wouter Gevers, Wouter van Overbeek, Daniëlle de Haan, Arnold Jaspers, Richard T. Hilbers, Peter A. van Riel, Natal Flück, Martin Biomed Res Int Research Article We explored to what extent isoforms of the regulator of excitation-contraction and excitation-transcription coupling, calcium/calmodulin protein kinase II (CaMKII) contribute to the specificity of myocellular calcium sensing between muscle types and whether concentration transients in its autophosphorylation can be simulated. CaMKII autophosphorylation at Thr287 was assessed in three muscle compartments of the rat after slow or fast motor unit-type stimulation and was compared against a computational model (CaMuZclE) coupling myocellular calcium dynamics with CaMKII Thr287 phosphorylation. Qualitative differences existed between fast- (gastrocnemius medialis) and slow-type muscle (soleus) for the expression pattern of CaMKII isoforms. Phospho-Thr287 content of δA CaMKII, associated with nuclear functions, demonstrated a transient and compartment-specific increase after excitation, which contrasted to the delayed autophosphorylation of the sarcoplasmic reticulum-associated βM CaMKII. In soleus muscle, excitation-induced δA CaMKII autophosphorylation demonstrated frequency dependence (P = 0.02). In the glycolytic compartment of gastrocnemius medialis, CaMKII autophosphorylation after excitation was blunted. In silico assessment emphasized the importance of mitochondrial calcium buffer capacity for excitation-induced CaMKII autophosphorylation but did not predict its isoform specificity. The findings expose that CaMKII autophosphorylation with paced contractions is regulated in an isoform and muscle type-specific fashion and highlight properties emerging for phenotype-specific regulation of CaMKII. Hindawi Publishing Corporation 2014 2014-06-26 /pmc/articles/PMC4099113/ /pubmed/25054156 http://dx.doi.org/10.1155/2014/943806 Text en Copyright © 2014 Wouter Eilers et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Eilers, Wouter
Gevers, Wouter
van Overbeek, Daniëlle
de Haan, Arnold
Jaspers, Richard T.
Hilbers, Peter A.
van Riel, Natal
Flück, Martin
Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions
title Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions
title_full Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions
title_fullStr Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions
title_full_unstemmed Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions
title_short Muscle-Type Specific Autophosphorylation of CaMKII Isoforms after Paced Contractions
title_sort muscle-type specific autophosphorylation of camkii isoforms after paced contractions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4099113/
https://www.ncbi.nlm.nih.gov/pubmed/25054156
http://dx.doi.org/10.1155/2014/943806
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