Cargando…

Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice

In our recent study was shown a significant recovery of damaged skeletal muscle of mice with X-linked muscular dystrophy (mdx) following low-intensity endurance exercise, probably by reducing the degeneration of dystrophic muscle. Consequently, in the present work, we aimed to identify proteins invo...

Descripción completa

Detalles Bibliográficos
Autores principales: Fontana, Simona, Schillaci, Odessa, Frinchi, Monica, Giallombardo, Marco, Morici, Giuseppe, Liberto, Valentina Di, Alessandro, Riccardo, De Leo, Giacomo, Perciavalle, Vincenzo, Belluardo, Natale, Mudò, Giuseppa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613691/
https://www.ncbi.nlm.nih.gov/pubmed/26182375
http://dx.doi.org/10.1042/BSR20150013
_version_ 1782396313349914624
author Fontana, Simona
Schillaci, Odessa
Frinchi, Monica
Giallombardo, Marco
Morici, Giuseppe
Liberto, Valentina Di
Alessandro, Riccardo
De Leo, Giacomo
Perciavalle, Vincenzo
Belluardo, Natale
Mudò, Giuseppa
author_facet Fontana, Simona
Schillaci, Odessa
Frinchi, Monica
Giallombardo, Marco
Morici, Giuseppe
Liberto, Valentina Di
Alessandro, Riccardo
De Leo, Giacomo
Perciavalle, Vincenzo
Belluardo, Natale
Mudò, Giuseppa
author_sort Fontana, Simona
collection PubMed
description In our recent study was shown a significant recovery of damaged skeletal muscle of mice with X-linked muscular dystrophy (mdx) following low-intensity endurance exercise, probably by reducing the degeneration of dystrophic muscle. Consequently, in the present work, we aimed to identify proteins involved in the observed reduction in degenerating fibres. To this end, we used proteomic analysis to evaluate changes in the protein profile of quadriceps dystrophic muscles of exercised compared with sedentary mdx mice. Four protein spots were found to be significantly changed and were identified as three isoforms of carbonic anhydrase 3 (CA3) and superoxide dismutase [Cu-Zn] (SODC). Protein levels of CA3 isoforms were significantly up-regulated in quadriceps of sedentary mdx mice and were completely restored to wild–type (WT) mice values, both sedentary and exercised, in quadriceps of exercised mdx mice. Protein levels of SODC were down-regulated in quadriceps of sedentary mdx mice and were significantly restored to WT mice values, both sedentary and exercised, in quadriceps of exercised mdx mice. Western blot data were in agreement with those obtained using proteomic analysis and revealed the presence of one more CA3 isoform that was significantly changed. Based on data found in the present study, it seems that low-intensity endurance exercise may in part contribute to reduce cell degeneration process in mdx muscles, by counteracting oxidative stress.
format Online
Article
Text
id pubmed-4613691
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-46136912016-09-13 Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice Fontana, Simona Schillaci, Odessa Frinchi, Monica Giallombardo, Marco Morici, Giuseppe Liberto, Valentina Di Alessandro, Riccardo De Leo, Giacomo Perciavalle, Vincenzo Belluardo, Natale Mudò, Giuseppa Biosci Rep Original Papers In our recent study was shown a significant recovery of damaged skeletal muscle of mice with X-linked muscular dystrophy (mdx) following low-intensity endurance exercise, probably by reducing the degeneration of dystrophic muscle. Consequently, in the present work, we aimed to identify proteins involved in the observed reduction in degenerating fibres. To this end, we used proteomic analysis to evaluate changes in the protein profile of quadriceps dystrophic muscles of exercised compared with sedentary mdx mice. Four protein spots were found to be significantly changed and were identified as three isoforms of carbonic anhydrase 3 (CA3) and superoxide dismutase [Cu-Zn] (SODC). Protein levels of CA3 isoforms were significantly up-regulated in quadriceps of sedentary mdx mice and were completely restored to wild–type (WT) mice values, both sedentary and exercised, in quadriceps of exercised mdx mice. Protein levels of SODC were down-regulated in quadriceps of sedentary mdx mice and were significantly restored to WT mice values, both sedentary and exercised, in quadriceps of exercised mdx mice. Western blot data were in agreement with those obtained using proteomic analysis and revealed the presence of one more CA3 isoform that was significantly changed. Based on data found in the present study, it seems that low-intensity endurance exercise may in part contribute to reduce cell degeneration process in mdx muscles, by counteracting oxidative stress. Portland Press Ltd. 2015-06-22 /pmc/articles/PMC4613691/ /pubmed/26182375 http://dx.doi.org/10.1042/BSR20150013 Text en © 2015 Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article published by Portland Press Limited and distributed under the Creative Commons Attribution Licence 3.0 (http://creativecommons.org/licenses/by/3.0/) .
spellingShingle Original Papers
Fontana, Simona
Schillaci, Odessa
Frinchi, Monica
Giallombardo, Marco
Morici, Giuseppe
Liberto, Valentina Di
Alessandro, Riccardo
De Leo, Giacomo
Perciavalle, Vincenzo
Belluardo, Natale
Mudò, Giuseppa
Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
title Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
title_full Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
title_fullStr Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
title_full_unstemmed Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
title_short Reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
title_sort reduction in mdx mouse muscle degeneration by low-intensity endurance exercise: a proteomic analysis in quadriceps muscle of exercised compared with sedentary mdx mice
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4613691/
https://www.ncbi.nlm.nih.gov/pubmed/26182375
http://dx.doi.org/10.1042/BSR20150013
work_keys_str_mv AT fontanasimona reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT schillaciodessa reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT frinchimonica reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT giallombardomarco reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT moricigiuseppe reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT libertovalentinadi reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT alessandroriccardo reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT deleogiacomo reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT perciavallevincenzo reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT belluardonatale reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice
AT mudogiuseppa reductioninmdxmousemuscledegenerationbylowintensityenduranceexerciseaproteomicanalysisinquadricepsmuscleofexercisedcomparedwithsedentarymdxmice