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Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness

OBJECTIVE: Skeletal muscle weakness is a prominent clinical feature in patients with rheumatoid arthritis (RA), but the underlying mechanism(s) is unknown. Here we investigate the mechanisms behind arthritis-induced skeletal muscle weakness with special focus on the role of nitrosative stress on int...

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Autores principales: Yamada, Takashi, Fedotovskaya, Olga, Cheng, Arthur J, Cornachione, Anabelle S, Minozzo, Fabio C, Aulin, Cecilia, Fridén, Cecilia, Turesson, Carl, Andersson, Daniel C, Glenmark, Birgitta, Lundberg, Ingrid E, Rassier, Dilson E, Westerblad, Håkan, Lanner, Johanna T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4602262/
https://www.ncbi.nlm.nih.gov/pubmed/24854355
http://dx.doi.org/10.1136/annrheumdis-2013-205007
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author Yamada, Takashi
Fedotovskaya, Olga
Cheng, Arthur J
Cornachione, Anabelle S
Minozzo, Fabio C
Aulin, Cecilia
Fridén, Cecilia
Turesson, Carl
Andersson, Daniel C
Glenmark, Birgitta
Lundberg, Ingrid E
Rassier, Dilson E
Westerblad, Håkan
Lanner, Johanna T
author_facet Yamada, Takashi
Fedotovskaya, Olga
Cheng, Arthur J
Cornachione, Anabelle S
Minozzo, Fabio C
Aulin, Cecilia
Fridén, Cecilia
Turesson, Carl
Andersson, Daniel C
Glenmark, Birgitta
Lundberg, Ingrid E
Rassier, Dilson E
Westerblad, Håkan
Lanner, Johanna T
author_sort Yamada, Takashi
collection PubMed
description OBJECTIVE: Skeletal muscle weakness is a prominent clinical feature in patients with rheumatoid arthritis (RA), but the underlying mechanism(s) is unknown. Here we investigate the mechanisms behind arthritis-induced skeletal muscle weakness with special focus on the role of nitrosative stress on intracellular Ca(2+) handling and specific force production. METHODS: Nitric oxide synthase (NOS) expression, degree of nitrosative stress and composition of the major intracellular Ca(2+) release channel (ryanodine receptor 1, RyR1) complex were measured in muscle. Changes in cytosolic free Ca(2+) concentration ([Ca(2+)](i)) and force production were assessed in single-muscle fibres and isolated myofibrils using atomic force cantilevers. RESULTS: The total neuronal NOS (nNOS) levels were increased in muscles both from collagen-induced arthritis (CIA) mice and patients with RA. The nNOS associated with RyR1 was increased and accompanied by increased [Ca(2+)](i) during contractions of muscles from CIA mice. A marker of peroxynitrite-derived nitrosative stress (3-nitrotyrosine, 3-NT) was increased on the RyR1 complex and on actin of muscles from CIA mice. Despite increased [Ca(2+)](i), individual CIA muscle fibres were weaker than in healthy controls, that is, force per cross-sectional area was decreased. Furthermore, force and kinetics were impaired in CIA myofibrils, hence actin and myosin showed decreased ability to interact, which could be a result of increased 3-NT content on actin. CONCLUSIONS: Arthritis-induced muscle weakness is linked to nitrosative modifications of the RyR1 protein complex and actin, which are driven by increased nNOS associated with RyR1 and progressively increasing Ca(2+) activation.
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spelling pubmed-46022622015-10-21 Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness Yamada, Takashi Fedotovskaya, Olga Cheng, Arthur J Cornachione, Anabelle S Minozzo, Fabio C Aulin, Cecilia Fridén, Cecilia Turesson, Carl Andersson, Daniel C Glenmark, Birgitta Lundberg, Ingrid E Rassier, Dilson E Westerblad, Håkan Lanner, Johanna T Ann Rheum Dis Basic and Translational Research OBJECTIVE: Skeletal muscle weakness is a prominent clinical feature in patients with rheumatoid arthritis (RA), but the underlying mechanism(s) is unknown. Here we investigate the mechanisms behind arthritis-induced skeletal muscle weakness with special focus on the role of nitrosative stress on intracellular Ca(2+) handling and specific force production. METHODS: Nitric oxide synthase (NOS) expression, degree of nitrosative stress and composition of the major intracellular Ca(2+) release channel (ryanodine receptor 1, RyR1) complex were measured in muscle. Changes in cytosolic free Ca(2+) concentration ([Ca(2+)](i)) and force production were assessed in single-muscle fibres and isolated myofibrils using atomic force cantilevers. RESULTS: The total neuronal NOS (nNOS) levels were increased in muscles both from collagen-induced arthritis (CIA) mice and patients with RA. The nNOS associated with RyR1 was increased and accompanied by increased [Ca(2+)](i) during contractions of muscles from CIA mice. A marker of peroxynitrite-derived nitrosative stress (3-nitrotyrosine, 3-NT) was increased on the RyR1 complex and on actin of muscles from CIA mice. Despite increased [Ca(2+)](i), individual CIA muscle fibres were weaker than in healthy controls, that is, force per cross-sectional area was decreased. Furthermore, force and kinetics were impaired in CIA myofibrils, hence actin and myosin showed decreased ability to interact, which could be a result of increased 3-NT content on actin. CONCLUSIONS: Arthritis-induced muscle weakness is linked to nitrosative modifications of the RyR1 protein complex and actin, which are driven by increased nNOS associated with RyR1 and progressively increasing Ca(2+) activation. BMJ Publishing Group 2015-10 2014-05-19 /pmc/articles/PMC4602262/ /pubmed/24854355 http://dx.doi.org/10.1136/annrheumdis-2013-205007 Text en Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://group.bmj.com/group/rights-licensing/permissions This is an Open Access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 3.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Basic and Translational Research
Yamada, Takashi
Fedotovskaya, Olga
Cheng, Arthur J
Cornachione, Anabelle S
Minozzo, Fabio C
Aulin, Cecilia
Fridén, Cecilia
Turesson, Carl
Andersson, Daniel C
Glenmark, Birgitta
Lundberg, Ingrid E
Rassier, Dilson E
Westerblad, Håkan
Lanner, Johanna T
Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness
title Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness
title_full Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness
title_fullStr Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness
title_full_unstemmed Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness
title_short Nitrosative modifications of the Ca(2+) release complex and actin underlie arthritis-induced muscle weakness
title_sort nitrosative modifications of the ca(2+) release complex and actin underlie arthritis-induced muscle weakness
topic Basic and Translational Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4602262/
https://www.ncbi.nlm.nih.gov/pubmed/24854355
http://dx.doi.org/10.1136/annrheumdis-2013-205007
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