PGC-1α induces mitochondrial and myokine transcriptional programs and lipid droplet and glycogen accumulation in cultured human skeletal muscle cells

dc.contributor.author
Mormeneo, Emma
dc.contributor.author
Jiménez Mallebrera, Cecilia
dc.contributor.author
Palomer Tarridas, Francesc Xavier
dc.contributor.author
De Nigris, Valeria
dc.contributor.author
Vázquez Carrera, Manuel
dc.contributor.author
Orozco, Anna
dc.contributor.author
Nascimento, Andrés
dc.contributor.author
Colomer Oferil, Jaume
dc.contributor.author
Lerín Martínez, Carlos
dc.contributor.author
Gómez Foix, Anna Maria
dc.date.issued
2013-05-09T17:33:23Z
dc.date.issued
2013-05-09T17:33:23Z
dc.date.issued
2012-01-12
dc.date.issued
2013-05-09T17:33:23Z
dc.identifier
1932-6203
dc.identifier
https://hdl.handle.net/2445/43265
dc.identifier
605297
dc.identifier
22272266
dc.description.abstract
The transcriptional coactivator peroxisome proliferator-activated receptor-gamma coactivator 1 alpha (PGC-1α) is a chief activator of mitochondrial and metabolic programs and protects against atrophy in skeletal muscle (skm). Here we tested whether PGC-1α overexpression could restructure the transcriptome and metabolism of primary cultured human skm cells, which display a phenotype that resembles the atrophic phenotype. An oligonucleotide microarray analysis was used to reveal the effects of PGC-1α on the whole transcriptome. Fifty-three different genes showed altered expression in response to PGC-1α: 42 upregulated and 11 downregulated. The main gene ontologies (GO) associated with the upregulated genes were mitochondrial components and processes and this was linked with an increase in COX activity, an indicator of mitochondrial content. Furthermore, PGC-1α enhanced mitochondrial oxidation of palmitate and lactate to CO2, but not glucose oxidation. The other most significantly associated GOs for the upregulated genes were chemotaxis and cytokine activity, and several cytokines, including IL-8/CXCL8, CXCL6, CCL5 and CCL8, were within the most highly induced genes. Indeed, PGC-1α highly increased IL-8 cell protein content. The most upregulated gene was PVALB, which is related to calcium signaling. Potential metabolic regulators of fatty acid and glucose storage were among mainly regulated genes. The mRNA and protein level of FITM1/FIT1, which enhances the formation of lipid droplets, was raised by PGC-1α, while in oleate-incubated cells PGC-1α increased the number of smaller lipid droplets and modestly triglyceride levels, compared to controls. CALM1, the calcium-modulated δ subunit of phosphorylase kinase, was downregulated by PGC-1α, while glycogen phosphorylase was inactivated and glycogen storage was increased by PGC-1α. In conclusion, of the metabolic transcriptome deficiencies of cultured skm cells, PGC-1α rescued the expression of genes encoding mitochondrial proteins and FITM1. Several myokine genes, including IL-8 and CCL5, which are known to be constitutively expressed in human skm cells, were induced by PGC-1α.
dc.format
14 p.
dc.format
application/pdf
dc.format
application/pdf
dc.language
eng
dc.publisher
Public Library of Science (PLoS)
dc.relation
Reproducció del document publicat a: http://dx.doi.org/10.1371/journal.pone.0029985
dc.relation
PLoS One, 2012, vol. 7, num. 1, p. 29985
dc.relation
http://dx.doi.org/10.1371/journal.pone.0029985
dc.rights
cc-by (c) Mormeneo, E. et al., 2012
dc.rights
http://creativecommons.org/licenses/by/3.0/es
dc.rights
info:eu-repo/semantics/openAccess
dc.source
Articles publicats en revistes (Farmacologia, Toxicologia i Química Terapèutica)
dc.subject
Trastorns del metabolisme
dc.subject
Genètica molecular
dc.subject
Fisiologia patològica
dc.subject
Disorders of metabolism
dc.subject
Molecular genetics
dc.subject
Pathological physiology
dc.title
PGC-1α induces mitochondrial and myokine transcriptional programs and lipid droplet and glycogen accumulation in cultured human skeletal muscle cells
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion


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