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Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation

Lipid droplet-associated proteins such as perilipin 3 (PLIN3) and coatomer GTPase proteins (GBF1, ARF1, Sec23a, and ARFRP1) are expressed in skeletal muscle but little is known so far as to their regulation of lipolysis. We aimed here to explore the effects of lipolytic stimulation in vitro in prima...

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Autores principales: Covington, Jeffrey D., Galgani, Jose E., Moro, Cedric, LaGrange, Jamie M., Zhang, Zhengyu, Rustan, Arild C., Ravussin, Eric, Bajpeyi, Sudip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3954790/
https://www.ncbi.nlm.nih.gov/pubmed/24632837
http://dx.doi.org/10.1371/journal.pone.0091675
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author Covington, Jeffrey D.
Galgani, Jose E.
Moro, Cedric
LaGrange, Jamie M.
Zhang, Zhengyu
Rustan, Arild C.
Ravussin, Eric
Bajpeyi, Sudip
author_facet Covington, Jeffrey D.
Galgani, Jose E.
Moro, Cedric
LaGrange, Jamie M.
Zhang, Zhengyu
Rustan, Arild C.
Ravussin, Eric
Bajpeyi, Sudip
author_sort Covington, Jeffrey D.
collection PubMed
description Lipid droplet-associated proteins such as perilipin 3 (PLIN3) and coatomer GTPase proteins (GBF1, ARF1, Sec23a, and ARFRP1) are expressed in skeletal muscle but little is known so far as to their regulation of lipolysis. We aimed here to explore the effects of lipolytic stimulation in vitro in primary human myotubes as well as in vivo following an acute exercise bout. In vitro lipolytic stimulation by epinephrine (100 μM) or by a lipolytic cocktail (30 μM palmitate, 4 μM forskolin, and 0.5 μM ionomycin, PFI) resulted in increases in PLIN3 protein content. Coatomer GTPases such as GBF1, ARF1, Sec23a, and ARFRP1 also increased in response to lipolytic stimuli. Furthermore, a long duration endurance exercise bout (20 males; age 24.0±4.5 y; BMI 23.6±1.8 kg/m(2)) increased PLIN3 protein in human skeletal muscle (p = 0.03) in proportion to ex vivo palmitate oxidation (r = 0.45, p = 0.04) and whole body in vivo fat oxidation (r = 0.52, p = 0.03). Protein content of ARF1 was increased (p = 0.04) while mRNA expression was increased for several other coatomers (GBF1, ARF1, and Sec23a, all p<0.05). These data provide novel observational insight into the possible relationships between lipolysis and PLIN3 along with these coatomoer GTPase proteins in human skeletal muscle.
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spelling pubmed-39547902014-03-18 Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation Covington, Jeffrey D. Galgani, Jose E. Moro, Cedric LaGrange, Jamie M. Zhang, Zhengyu Rustan, Arild C. Ravussin, Eric Bajpeyi, Sudip PLoS One Research Article Lipid droplet-associated proteins such as perilipin 3 (PLIN3) and coatomer GTPase proteins (GBF1, ARF1, Sec23a, and ARFRP1) are expressed in skeletal muscle but little is known so far as to their regulation of lipolysis. We aimed here to explore the effects of lipolytic stimulation in vitro in primary human myotubes as well as in vivo following an acute exercise bout. In vitro lipolytic stimulation by epinephrine (100 μM) or by a lipolytic cocktail (30 μM palmitate, 4 μM forskolin, and 0.5 μM ionomycin, PFI) resulted in increases in PLIN3 protein content. Coatomer GTPases such as GBF1, ARF1, Sec23a, and ARFRP1 also increased in response to lipolytic stimuli. Furthermore, a long duration endurance exercise bout (20 males; age 24.0±4.5 y; BMI 23.6±1.8 kg/m(2)) increased PLIN3 protein in human skeletal muscle (p = 0.03) in proportion to ex vivo palmitate oxidation (r = 0.45, p = 0.04) and whole body in vivo fat oxidation (r = 0.52, p = 0.03). Protein content of ARF1 was increased (p = 0.04) while mRNA expression was increased for several other coatomers (GBF1, ARF1, and Sec23a, all p<0.05). These data provide novel observational insight into the possible relationships between lipolysis and PLIN3 along with these coatomoer GTPase proteins in human skeletal muscle. Public Library of Science 2014-03-14 /pmc/articles/PMC3954790/ /pubmed/24632837 http://dx.doi.org/10.1371/journal.pone.0091675 Text en © 2014 Covington 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
Covington, Jeffrey D.
Galgani, Jose E.
Moro, Cedric
LaGrange, Jamie M.
Zhang, Zhengyu
Rustan, Arild C.
Ravussin, Eric
Bajpeyi, Sudip
Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation
title Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation
title_full Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation
title_fullStr Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation
title_full_unstemmed Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation
title_short Skeletal Muscle Perilipin 3 and Coatomer Proteins Are Increased following Exercise and Are Associated with Fat Oxidation
title_sort skeletal muscle perilipin 3 and coatomer proteins are increased following exercise and are associated with fat oxidation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3954790/
https://www.ncbi.nlm.nih.gov/pubmed/24632837
http://dx.doi.org/10.1371/journal.pone.0091675
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