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Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness

BACKGROUND: The skeletal muscle system plays an important role in the independence of older adults. In this study we examine differences in the skeletal muscle transcriptome between healthy young and older subjects and (pre‐)frail older adults. Additionally, we examine the effect of resistance‐type...

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Autores principales: Hangelbroek, Roland W. J., Fazelzadeh, Parastoo, Tieland, Michael, Boekschoten, Mark V., Hooiveld, Guido J. E. J., van Duynhoven, John P. M., Timmons, James A., Verdijk, Lex B., de Groot, Lisette C. P. G. M., van Loon, Luc J. C., Müller, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4863830/
https://www.ncbi.nlm.nih.gov/pubmed/27239416
http://dx.doi.org/10.1002/jcsm.12099
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author Hangelbroek, Roland W. J.
Fazelzadeh, Parastoo
Tieland, Michael
Boekschoten, Mark V.
Hooiveld, Guido J. E. J.
van Duynhoven, John P. M.
Timmons, James A.
Verdijk, Lex B.
de Groot, Lisette C. P. G. M.
van Loon, Luc J. C.
Müller, Michael
author_facet Hangelbroek, Roland W. J.
Fazelzadeh, Parastoo
Tieland, Michael
Boekschoten, Mark V.
Hooiveld, Guido J. E. J.
van Duynhoven, John P. M.
Timmons, James A.
Verdijk, Lex B.
de Groot, Lisette C. P. G. M.
van Loon, Luc J. C.
Müller, Michael
author_sort Hangelbroek, Roland W. J.
collection PubMed
description BACKGROUND: The skeletal muscle system plays an important role in the independence of older adults. In this study we examine differences in the skeletal muscle transcriptome between healthy young and older subjects and (pre‐)frail older adults. Additionally, we examine the effect of resistance‐type exercise training on the muscle transcriptome in healthy older subjects and (pre‐)frail older adults. METHODS: Baseline transcriptome profiles were measured in muscle biopsies collected from 53 young, 73 healthy older subjects, and 61 frail older subjects. Follow‐up samples from these frail older subjects (31 samples) and healthy older subjects (41 samples) were collected after 6 months of progressive resistance‐type exercise training. Frail older subjects trained twice per week and the healthy older subjects trained three times per week. RESULTS: At baseline genes related to mitochondrial function and energy metabolism were differentially expressed between older and young subjects, as well as between healthy and frail older subjects. Three hundred seven genes were differentially expressed after training in both groups. Training affected expression levels of genes related to extracellular matrix, glucose metabolism ,and vascularization. Expression of genes that were modulated by exercise training was indicative of muscle strength at baseline. Genes that strongly correlated with strength belonged to the protocadherin gamma gene cluster (r = −0.73). CONCLUSIONS: Our data suggest significant remaining plasticity of ageing skeletal muscle to adapt to resistance‐type exercise training. Some age‐related changes in skeletal muscle gene expression appear to be partially reversed by prolonged resistance‐type exercise training. The protocadherin gamma gene cluster may be related to muscle denervation and re‐innervation in ageing muscle.
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spelling pubmed-48638302016-05-27 Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness Hangelbroek, Roland W. J. Fazelzadeh, Parastoo Tieland, Michael Boekschoten, Mark V. Hooiveld, Guido J. E. J. van Duynhoven, John P. M. Timmons, James A. Verdijk, Lex B. de Groot, Lisette C. P. G. M. van Loon, Luc J. C. Müller, Michael J Cachexia Sarcopenia Muscle Original Articles BACKGROUND: The skeletal muscle system plays an important role in the independence of older adults. In this study we examine differences in the skeletal muscle transcriptome between healthy young and older subjects and (pre‐)frail older adults. Additionally, we examine the effect of resistance‐type exercise training on the muscle transcriptome in healthy older subjects and (pre‐)frail older adults. METHODS: Baseline transcriptome profiles were measured in muscle biopsies collected from 53 young, 73 healthy older subjects, and 61 frail older subjects. Follow‐up samples from these frail older subjects (31 samples) and healthy older subjects (41 samples) were collected after 6 months of progressive resistance‐type exercise training. Frail older subjects trained twice per week and the healthy older subjects trained three times per week. RESULTS: At baseline genes related to mitochondrial function and energy metabolism were differentially expressed between older and young subjects, as well as between healthy and frail older subjects. Three hundred seven genes were differentially expressed after training in both groups. Training affected expression levels of genes related to extracellular matrix, glucose metabolism ,and vascularization. Expression of genes that were modulated by exercise training was indicative of muscle strength at baseline. Genes that strongly correlated with strength belonged to the protocadherin gamma gene cluster (r = −0.73). CONCLUSIONS: Our data suggest significant remaining plasticity of ageing skeletal muscle to adapt to resistance‐type exercise training. Some age‐related changes in skeletal muscle gene expression appear to be partially reversed by prolonged resistance‐type exercise training. The protocadherin gamma gene cluster may be related to muscle denervation and re‐innervation in ageing muscle. John Wiley and Sons Inc. 2016-02-02 2016-12 /pmc/articles/PMC4863830/ /pubmed/27239416 http://dx.doi.org/10.1002/jcsm.12099 Text en © 2016 The Authors. Journal of Cachexia, Sarcopenia and Muscle published by John Wiley & Sons Ltd on behalf of the Society on Sarcopenia, Cachexia and Wasting Disorders This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Hangelbroek, Roland W. J.
Fazelzadeh, Parastoo
Tieland, Michael
Boekschoten, Mark V.
Hooiveld, Guido J. E. J.
van Duynhoven, John P. M.
Timmons, James A.
Verdijk, Lex B.
de Groot, Lisette C. P. G. M.
van Loon, Luc J. C.
Müller, Michael
Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
title Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
title_full Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
title_fullStr Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
title_full_unstemmed Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
title_short Expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
title_sort expression of protocadherin gamma in skeletal muscle tissue is associated with age and muscle weakness
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4863830/
https://www.ncbi.nlm.nih.gov/pubmed/27239416
http://dx.doi.org/10.1002/jcsm.12099
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