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The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis
Growing evidence supports the importance of ubiquitin ligases in the pathogenesis of muscular disorders, although underlying mechanisms remain largely elusive. Here we show that the expression of RNF5 (aka RMA1), an ER-anchored RING finger E3 ligase implicated in muscle organization and in recogniti...
Autores principales: | , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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Public Library of Science
2008
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2229664/ https://www.ncbi.nlm.nih.gov/pubmed/18270596 http://dx.doi.org/10.1371/journal.pone.0001609 |
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author | Delaunay, Agnès Bromberg, Kenneth D. Hayashi, Yukiko Mirabella, Massimiliano Burch, Denise Kirkwood, Brian Serra, Carlo Malicdan, May C. Mizisin, Andrew P. Morosetti, Roberta Broccolini, Aldobrando Guo, Ling T. Jones, Stephen N. Lira, Sergio A. Puri, Pier Lorenzo Shelton, G. Diane Ronai, Ze'ev |
author_facet | Delaunay, Agnès Bromberg, Kenneth D. Hayashi, Yukiko Mirabella, Massimiliano Burch, Denise Kirkwood, Brian Serra, Carlo Malicdan, May C. Mizisin, Andrew P. Morosetti, Roberta Broccolini, Aldobrando Guo, Ling T. Jones, Stephen N. Lira, Sergio A. Puri, Pier Lorenzo Shelton, G. Diane Ronai, Ze'ev |
author_sort | Delaunay, Agnès |
collection | PubMed |
description | Growing evidence supports the importance of ubiquitin ligases in the pathogenesis of muscular disorders, although underlying mechanisms remain largely elusive. Here we show that the expression of RNF5 (aka RMA1), an ER-anchored RING finger E3 ligase implicated in muscle organization and in recognition and processing of malfolded proteins, is elevated and mislocalized to cytoplasmic aggregates in biopsies from patients suffering from sporadic-Inclusion Body Myositis (sIBM). Consistent with these findings, an animal model for hereditary IBM (hIBM), but not their control littermates, revealed deregulated expression of RNF5. Further studies for the role of RNF5 in the pathogenesis of s-IBM and more generally in muscle physiology were performed using RNF5 transgenic and KO animals. Transgenic mice carrying inducible expression of RNF5, under control of β-actin or muscle specific promoter, exhibit an early onset of muscle wasting, muscle degeneration and extensive fiber regeneration. Prolonged expression of RNF5 in the muscle also results in the formation of fibers containing congophilic material, blue-rimmed vacuoles and inclusion bodies. These phenotypes were associated with altered expression and activity of ER chaperones, characteristic of myodegenerative diseases such as s-IBM. Conversely, muscle regeneration and induction of ER stress markers were delayed in RNF5 KO mice subjected to cardiotoxin treatment. While supporting a role for RNF5 Tg mice as model for s-IBM, our study also establishes the importance of RNF5 in muscle physiology and its deregulation in ER stress associated muscular disorders. |
format | Text |
id | pubmed-2229664 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2008 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-22296642008-02-13 The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis Delaunay, Agnès Bromberg, Kenneth D. Hayashi, Yukiko Mirabella, Massimiliano Burch, Denise Kirkwood, Brian Serra, Carlo Malicdan, May C. Mizisin, Andrew P. Morosetti, Roberta Broccolini, Aldobrando Guo, Ling T. Jones, Stephen N. Lira, Sergio A. Puri, Pier Lorenzo Shelton, G. Diane Ronai, Ze'ev PLoS One Research Article Growing evidence supports the importance of ubiquitin ligases in the pathogenesis of muscular disorders, although underlying mechanisms remain largely elusive. Here we show that the expression of RNF5 (aka RMA1), an ER-anchored RING finger E3 ligase implicated in muscle organization and in recognition and processing of malfolded proteins, is elevated and mislocalized to cytoplasmic aggregates in biopsies from patients suffering from sporadic-Inclusion Body Myositis (sIBM). Consistent with these findings, an animal model for hereditary IBM (hIBM), but not their control littermates, revealed deregulated expression of RNF5. Further studies for the role of RNF5 in the pathogenesis of s-IBM and more generally in muscle physiology were performed using RNF5 transgenic and KO animals. Transgenic mice carrying inducible expression of RNF5, under control of β-actin or muscle specific promoter, exhibit an early onset of muscle wasting, muscle degeneration and extensive fiber regeneration. Prolonged expression of RNF5 in the muscle also results in the formation of fibers containing congophilic material, blue-rimmed vacuoles and inclusion bodies. These phenotypes were associated with altered expression and activity of ER chaperones, characteristic of myodegenerative diseases such as s-IBM. Conversely, muscle regeneration and induction of ER stress markers were delayed in RNF5 KO mice subjected to cardiotoxin treatment. While supporting a role for RNF5 Tg mice as model for s-IBM, our study also establishes the importance of RNF5 in muscle physiology and its deregulation in ER stress associated muscular disorders. Public Library of Science 2008-02-13 /pmc/articles/PMC2229664/ /pubmed/18270596 http://dx.doi.org/10.1371/journal.pone.0001609 Text en Delaunay 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 Delaunay, Agnès Bromberg, Kenneth D. Hayashi, Yukiko Mirabella, Massimiliano Burch, Denise Kirkwood, Brian Serra, Carlo Malicdan, May C. Mizisin, Andrew P. Morosetti, Roberta Broccolini, Aldobrando Guo, Ling T. Jones, Stephen N. Lira, Sergio A. Puri, Pier Lorenzo Shelton, G. Diane Ronai, Ze'ev The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis |
title | The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis |
title_full | The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis |
title_fullStr | The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis |
title_full_unstemmed | The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis |
title_short | The ER-Bound RING Finger Protein 5 (RNF5/RMA1) Causes Degenerative Myopathy in Transgenic Mice and Is Deregulated in Inclusion Body Myositis |
title_sort | er-bound ring finger protein 5 (rnf5/rma1) causes degenerative myopathy in transgenic mice and is deregulated in inclusion body myositis |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2229664/ https://www.ncbi.nlm.nih.gov/pubmed/18270596 http://dx.doi.org/10.1371/journal.pone.0001609 |
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