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The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue
[PURPOSE]: The purpose of this study was to determine whether exercise or/and cold exposure regulate mitochondria biogenesis-related gene expression in soleus and inguinal adipose tissue of mice. [METHODS]: Forty ICR 5-week old male mice were divided into four groups: thermoneutrality-untrained (23...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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한국운동영양학회
2017
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5545200/ https://www.ncbi.nlm.nih.gov/pubmed/28715885 http://dx.doi.org/10.20463/jenb.2017.0020 |
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author | Chung, Nana Park, Jonghoon Lim, Kiwon |
author_facet | Chung, Nana Park, Jonghoon Lim, Kiwon |
author_sort | Chung, Nana |
collection | PubMed |
description | [PURPOSE]: The purpose of this study was to determine whether exercise or/and cold exposure regulate mitochondria biogenesis-related gene expression in soleus and inguinal adipose tissue of mice. [METHODS]: Forty ICR 5-week old male mice were divided into four groups: thermoneutrality-untrained (23 ± 1 °C in room temperature, n=10), cold-water immersion (24 ± 1 °C, n=10), exercise in neutral temperature (34 ± 1 °C, n=10), and exercise in cold temperature (24 ± 1 °C, n=10). The mice performed swimming exercise (30 min to 60 min, 5 times) for 8 weeks. After 8 weeks, we confirmed mitochondrial biogenesis-related gene expression changes for peroxisome proliferator-activated receptor gamma coactivator-1 alpha (PGC-1α), nuclear respiratory factors 1 (NRF1), and mitochondrial transcription factor A (Tfam) in soleus muscle and inguinal adipose tissue, and the related protein expression in soleus muscle. [RESULTS]: In soleus muscle, PGC-1α expression significantly increased in response to cold exposure (p = 0.006) and exercise (p = 0.05). There was also significant interaction between exercise and cold exposure (p = 0.005). Only exercise had a significant effect on NRF1 relative expression (p=0.001). Neither cold exposure nor the interaction showed significant effects (p = 0.1222 and p = 0.875, respectively). Relative Tfam expression did not show any significant effect from exercise. In inguinal adipose tissue, relative PGC-1α expression did not significantly change in any group. NRF1 expression showed a significant change from exercise (p = 0.01) and cold exposure (p = 0.011). There was also a significant interaction between exercise and cold exposure (p = 0.000). Tfam mRNA expression showed a significant effect from exercise (p=0.000) and an interaction between exercise and cold exposure (p=0.001). Only temperature significantly affected PGC-1α protein levels (p=0.045). Neither exercise nor the interaction were significant (p = 0.397 and p = 0.292, respectively). NRF1 protein levels did not show a significant effect in any experimental treatments. Tfam protein levels showed a significant effect in the exercise group (p=0.012), but effects of neither cold exposure nor the interaction were significant (p = 0.085 and p=0.374, respectively). [CONCLUSION]: Exercise and cold exposure promoted increased expression of mitochondrial biogenesis- related genes in soleus muscle. Only cold exposure had a significant effect on PGC-1α protein expression and only exercise had a significant effect on Tfam protein expression. In inguinal adipose tissue, there was interaction between exercise and cold exposure in expression of mitochondrial biogenesis-related genes. |
format | Online Article Text |
id | pubmed-5545200 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | 한국운동영양학회 |
record_format | MEDLINE/PubMed |
spelling | pubmed-55452002017-08-15 The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue Chung, Nana Park, Jonghoon Lim, Kiwon J Exerc Nutrition Biochem Original Articles [PURPOSE]: The purpose of this study was to determine whether exercise or/and cold exposure regulate mitochondria biogenesis-related gene expression in soleus and inguinal adipose tissue of mice. [METHODS]: Forty ICR 5-week old male mice were divided into four groups: thermoneutrality-untrained (23 ± 1 °C in room temperature, n=10), cold-water immersion (24 ± 1 °C, n=10), exercise in neutral temperature (34 ± 1 °C, n=10), and exercise in cold temperature (24 ± 1 °C, n=10). The mice performed swimming exercise (30 min to 60 min, 5 times) for 8 weeks. After 8 weeks, we confirmed mitochondrial biogenesis-related gene expression changes for peroxisome proliferator-activated receptor gamma coactivator-1 alpha (PGC-1α), nuclear respiratory factors 1 (NRF1), and mitochondrial transcription factor A (Tfam) in soleus muscle and inguinal adipose tissue, and the related protein expression in soleus muscle. [RESULTS]: In soleus muscle, PGC-1α expression significantly increased in response to cold exposure (p = 0.006) and exercise (p = 0.05). There was also significant interaction between exercise and cold exposure (p = 0.005). Only exercise had a significant effect on NRF1 relative expression (p=0.001). Neither cold exposure nor the interaction showed significant effects (p = 0.1222 and p = 0.875, respectively). Relative Tfam expression did not show any significant effect from exercise. In inguinal adipose tissue, relative PGC-1α expression did not significantly change in any group. NRF1 expression showed a significant change from exercise (p = 0.01) and cold exposure (p = 0.011). There was also a significant interaction between exercise and cold exposure (p = 0.000). Tfam mRNA expression showed a significant effect from exercise (p=0.000) and an interaction between exercise and cold exposure (p=0.001). Only temperature significantly affected PGC-1α protein levels (p=0.045). Neither exercise nor the interaction were significant (p = 0.397 and p = 0.292, respectively). NRF1 protein levels did not show a significant effect in any experimental treatments. Tfam protein levels showed a significant effect in the exercise group (p=0.012), but effects of neither cold exposure nor the interaction were significant (p = 0.085 and p=0.374, respectively). [CONCLUSION]: Exercise and cold exposure promoted increased expression of mitochondrial biogenesis- related genes in soleus muscle. Only cold exposure had a significant effect on PGC-1α protein expression and only exercise had a significant effect on Tfam protein expression. In inguinal adipose tissue, there was interaction between exercise and cold exposure in expression of mitochondrial biogenesis-related genes. 한국운동영양학회 2017-06-30 2017-06-30 /pmc/articles/PMC5545200/ /pubmed/28715885 http://dx.doi.org/10.20463/jenb.2017.0020 Text en ©2017 The Korean Society for Exercise Nutrition ©2017 Nana Chung et al.; Licensee Journal of Exercise Nutrition and Biochemistry. This is an open accessarticle distributed under the terms of the creative commons attribution license (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the orginal work is properly cited. |
spellingShingle | Original Articles Chung, Nana Park, Jonghoon Lim, Kiwon The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
title | The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
title_full | The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
title_fullStr | The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
title_full_unstemmed | The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
title_short | The effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
title_sort | effects of exercise and cold exposure on mitochondrial biogenesis in skeletal muscle and white adipose tissue |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5545200/ https://www.ncbi.nlm.nih.gov/pubmed/28715885 http://dx.doi.org/10.20463/jenb.2017.0020 |
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