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Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice

Slow-twitch muscles, devoted to postural maintenance, experience atrophy and weakness during muscle disuse due to bed-rest, aging or spaceflight. These conditions impair motion activities and can have survival implications. Human and animal studies demonstrate the anabolic role of IGF-1 on skeletal...

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Autores principales: Pierno, Sabata, Camerino, Giulia M., Cannone, Maria, Liantonio, Antonella, De Bellis, Michela, Digennaro, Claudio, Gramegna, Gianluca, De Luca, Annamaria, Germinario, Elena, Danieli-Betto, Daniela, Betto, Romeo, Dobrowolny, Gabriella, Rizzuto, Emanuele, Musarò, Antonio, Desaphy, Jean-François, Camerino, Diana Conte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3670938/
https://www.ncbi.nlm.nih.gov/pubmed/23755187
http://dx.doi.org/10.1371/journal.pone.0065167
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author Pierno, Sabata
Camerino, Giulia M.
Cannone, Maria
Liantonio, Antonella
De Bellis, Michela
Digennaro, Claudio
Gramegna, Gianluca
De Luca, Annamaria
Germinario, Elena
Danieli-Betto, Daniela
Betto, Romeo
Dobrowolny, Gabriella
Rizzuto, Emanuele
Musarò, Antonio
Desaphy, Jean-François
Camerino, Diana Conte
author_facet Pierno, Sabata
Camerino, Giulia M.
Cannone, Maria
Liantonio, Antonella
De Bellis, Michela
Digennaro, Claudio
Gramegna, Gianluca
De Luca, Annamaria
Germinario, Elena
Danieli-Betto, Daniela
Betto, Romeo
Dobrowolny, Gabriella
Rizzuto, Emanuele
Musarò, Antonio
Desaphy, Jean-François
Camerino, Diana Conte
author_sort Pierno, Sabata
collection PubMed
description Slow-twitch muscles, devoted to postural maintenance, experience atrophy and weakness during muscle disuse due to bed-rest, aging or spaceflight. These conditions impair motion activities and can have survival implications. Human and animal studies demonstrate the anabolic role of IGF-1 on skeletal muscle suggesting its interest as a muscle disuse countermeasure. Thus, we tested the role of IGF-1 overexpression on skeletal muscle alteration due to hindlimb unloading (HU) by using MLC/mIgf-1 transgenic mice expressing IGF-1 under the transcriptional control of MLC promoter, selectively activated in skeletal muscle. HU produced atrophy in soleus muscle, in terms of muscle weight and fiber cross-sectional area (CSA) reduction, and up-regulation of atrophy gene MuRF1. In parallel, the disuse-induced slow-to-fast fiber transition was confirmed by an increase of the fast-type of the Myosin Heavy Chain (MHC), a decrease of PGC-1α expression and an increase of histone deacetylase-5 (HDAC5). Consistently, functional parameters such as the resting chloride conductance (gCl) together with ClC-1 chloride channel expression were increased and the contractile parameters were modified in soleus muscle of HU mice. Surprisingly, IGF-1 overexpression in HU mice was unable to counteract the loss of muscle weight and the decrease of fiber CSA. However, the expression of MuRF1 was recovered, suggesting early effects on muscle atrophy. Although the expression of PGC-1α and MHC were not improved in IGF-1-HU mice, the expression of HDAC5 was recovered. Importantly, the HU-induced increase of gCl was fully contrasted in IGF-1 transgenic mice, as well as the changes in contractile parameters. These results indicate that, even if local expression does not seem to attenuate HU-induced atrophy and slow-to-fast phenotype transition, it exerts early molecular effects on gene expression which can counteract the HU-induced modification of electrical and contractile properties. MuRF1 and HDAC5 can be attractive therapeutic targets for pharmacological countermeasures and then deserve further investigations.
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spelling pubmed-36709382013-06-10 Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice Pierno, Sabata Camerino, Giulia M. Cannone, Maria Liantonio, Antonella De Bellis, Michela Digennaro, Claudio Gramegna, Gianluca De Luca, Annamaria Germinario, Elena Danieli-Betto, Daniela Betto, Romeo Dobrowolny, Gabriella Rizzuto, Emanuele Musarò, Antonio Desaphy, Jean-François Camerino, Diana Conte PLoS One Research Article Slow-twitch muscles, devoted to postural maintenance, experience atrophy and weakness during muscle disuse due to bed-rest, aging or spaceflight. These conditions impair motion activities and can have survival implications. Human and animal studies demonstrate the anabolic role of IGF-1 on skeletal muscle suggesting its interest as a muscle disuse countermeasure. Thus, we tested the role of IGF-1 overexpression on skeletal muscle alteration due to hindlimb unloading (HU) by using MLC/mIgf-1 transgenic mice expressing IGF-1 under the transcriptional control of MLC promoter, selectively activated in skeletal muscle. HU produced atrophy in soleus muscle, in terms of muscle weight and fiber cross-sectional area (CSA) reduction, and up-regulation of atrophy gene MuRF1. In parallel, the disuse-induced slow-to-fast fiber transition was confirmed by an increase of the fast-type of the Myosin Heavy Chain (MHC), a decrease of PGC-1α expression and an increase of histone deacetylase-5 (HDAC5). Consistently, functional parameters such as the resting chloride conductance (gCl) together with ClC-1 chloride channel expression were increased and the contractile parameters were modified in soleus muscle of HU mice. Surprisingly, IGF-1 overexpression in HU mice was unable to counteract the loss of muscle weight and the decrease of fiber CSA. However, the expression of MuRF1 was recovered, suggesting early effects on muscle atrophy. Although the expression of PGC-1α and MHC were not improved in IGF-1-HU mice, the expression of HDAC5 was recovered. Importantly, the HU-induced increase of gCl was fully contrasted in IGF-1 transgenic mice, as well as the changes in contractile parameters. These results indicate that, even if local expression does not seem to attenuate HU-induced atrophy and slow-to-fast phenotype transition, it exerts early molecular effects on gene expression which can counteract the HU-induced modification of electrical and contractile properties. MuRF1 and HDAC5 can be attractive therapeutic targets for pharmacological countermeasures and then deserve further investigations. Public Library of Science 2013-06-03 /pmc/articles/PMC3670938/ /pubmed/23755187 http://dx.doi.org/10.1371/journal.pone.0065167 Text en © 2013 Pierno 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
Pierno, Sabata
Camerino, Giulia M.
Cannone, Maria
Liantonio, Antonella
De Bellis, Michela
Digennaro, Claudio
Gramegna, Gianluca
De Luca, Annamaria
Germinario, Elena
Danieli-Betto, Daniela
Betto, Romeo
Dobrowolny, Gabriella
Rizzuto, Emanuele
Musarò, Antonio
Desaphy, Jean-François
Camerino, Diana Conte
Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice
title Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice
title_full Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice
title_fullStr Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice
title_full_unstemmed Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice
title_short Paracrine Effects of IGF-1 Overexpression on the Functional Decline Due to Skeletal Muscle Disuse: Molecular and Functional Evaluation in Hindlimb Unloaded MLC/mIgf-1 Transgenic Mice
title_sort paracrine effects of igf-1 overexpression on the functional decline due to skeletal muscle disuse: molecular and functional evaluation in hindlimb unloaded mlc/migf-1 transgenic mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3670938/
https://www.ncbi.nlm.nih.gov/pubmed/23755187
http://dx.doi.org/10.1371/journal.pone.0065167
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