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Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice

BACKGROUND: Formation of 43S and 48S preinitiation complexes plays an important role in muscle protein synthesis. There is no muscle-wasting mouse model caused by a repressed 43S preinitiation complex assembly. OBJECTIVE: The aim of the present study was to develop a convenient mouse model of skelet...

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Autores principales: Miyake, Masato, Kuroda, Masashi, Kiyonari, Hiroshi, Takehana, Kenji, Hisanaga, Satoshi, Morimoto, Masatoshi, Zhang, Jun, Oyadomari, Miho, Sakaue, Hiroshi, Oyadomari, Seiichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5482508/
https://www.ncbi.nlm.nih.gov/pubmed/28644884
http://dx.doi.org/10.1371/journal.pone.0179955
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author Miyake, Masato
Kuroda, Masashi
Kiyonari, Hiroshi
Takehana, Kenji
Hisanaga, Satoshi
Morimoto, Masatoshi
Zhang, Jun
Oyadomari, Miho
Sakaue, Hiroshi
Oyadomari, Seiichi
author_facet Miyake, Masato
Kuroda, Masashi
Kiyonari, Hiroshi
Takehana, Kenji
Hisanaga, Satoshi
Morimoto, Masatoshi
Zhang, Jun
Oyadomari, Miho
Sakaue, Hiroshi
Oyadomari, Seiichi
author_sort Miyake, Masato
collection PubMed
description BACKGROUND: Formation of 43S and 48S preinitiation complexes plays an important role in muscle protein synthesis. There is no muscle-wasting mouse model caused by a repressed 43S preinitiation complex assembly. OBJECTIVE: The aim of the present study was to develop a convenient mouse model of skeletal muscle wasting with repressed 43S preinitiation complex assembly. MATERIAL AND METHODS: A ligand-activatable PERK derivative Fv2E-PERK causes the phosphorylation of eukaryotic initiation factor 2α (eIF2α), which inhibits 43S preinitiation complex assembly. Thus, muscle atrophic phenotypes, intracellular signaling pathways, and intracellular free amino acid profiles were investigated in human skeletal muscle α-actin (HSA) promoter-driven Fv2E-PERK transgenic (Tg) mice. RESULTS: HSA-Fv2E-PERK Tg mice treated with the artificial dimerizer AP20187 phosphorylates eIF2α in skeletal muscles and leads to severe muscle atrophy within a few days of ligand injection. Muscle atrophy was accompanied by a counter regulatory activation of mTORC1 signaling. Moreover, intracellular free amino acid levels were distinctively altered in the skeletal muscles of HSA-Fv2E-PERK Tg mice. CONCLUSIONS: As a novel model of muscle wasting, HSA-Fv2E-PERK Tg mice provide a convenient tool for studying the pathogenesis of muscle loss and for assessing putative therapeutics.
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spelling pubmed-54825082017-07-06 Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice Miyake, Masato Kuroda, Masashi Kiyonari, Hiroshi Takehana, Kenji Hisanaga, Satoshi Morimoto, Masatoshi Zhang, Jun Oyadomari, Miho Sakaue, Hiroshi Oyadomari, Seiichi PLoS One Research Article BACKGROUND: Formation of 43S and 48S preinitiation complexes plays an important role in muscle protein synthesis. There is no muscle-wasting mouse model caused by a repressed 43S preinitiation complex assembly. OBJECTIVE: The aim of the present study was to develop a convenient mouse model of skeletal muscle wasting with repressed 43S preinitiation complex assembly. MATERIAL AND METHODS: A ligand-activatable PERK derivative Fv2E-PERK causes the phosphorylation of eukaryotic initiation factor 2α (eIF2α), which inhibits 43S preinitiation complex assembly. Thus, muscle atrophic phenotypes, intracellular signaling pathways, and intracellular free amino acid profiles were investigated in human skeletal muscle α-actin (HSA) promoter-driven Fv2E-PERK transgenic (Tg) mice. RESULTS: HSA-Fv2E-PERK Tg mice treated with the artificial dimerizer AP20187 phosphorylates eIF2α in skeletal muscles and leads to severe muscle atrophy within a few days of ligand injection. Muscle atrophy was accompanied by a counter regulatory activation of mTORC1 signaling. Moreover, intracellular free amino acid levels were distinctively altered in the skeletal muscles of HSA-Fv2E-PERK Tg mice. CONCLUSIONS: As a novel model of muscle wasting, HSA-Fv2E-PERK Tg mice provide a convenient tool for studying the pathogenesis of muscle loss and for assessing putative therapeutics. Public Library of Science 2017-06-23 /pmc/articles/PMC5482508/ /pubmed/28644884 http://dx.doi.org/10.1371/journal.pone.0179955 Text en © 2017 Miyake 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Miyake, Masato
Kuroda, Masashi
Kiyonari, Hiroshi
Takehana, Kenji
Hisanaga, Satoshi
Morimoto, Masatoshi
Zhang, Jun
Oyadomari, Miho
Sakaue, Hiroshi
Oyadomari, Seiichi
Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice
title Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice
title_full Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice
title_fullStr Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice
title_full_unstemmed Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice
title_short Ligand-induced rapid skeletal muscle atrophy in HSA-Fv2E-PERK transgenic mice
title_sort ligand-induced rapid skeletal muscle atrophy in hsa-fv2e-perk transgenic mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5482508/
https://www.ncbi.nlm.nih.gov/pubmed/28644884
http://dx.doi.org/10.1371/journal.pone.0179955
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