Cargando…

PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise

The primary aim of the present study was to investigate the acute gene expression responses of PGC-1 isoforms and PGC-1α target genes related to mitochondrial biogenesis (cytochrome C), angiogenesis (VEGF-A), and muscle hypertrophy (myostatin), after a resistance or endurance exercise bout. In addit...

Descripción completa

Detalles Bibliográficos
Autores principales: Silvennoinen, Mika, Ahtiainen, Juha P, Hulmi, Juha J, Pekkala, Satu, Taipale, Ritva S, Nindl, Bradley C, Laine, Tanja, Häkkinen, Keijo, Selänne, Harri, Kyröläinen, Heikki, Kainulainen, Heikki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4632948/
https://www.ncbi.nlm.nih.gov/pubmed/26438733
http://dx.doi.org/10.14814/phy2.12563
_version_ 1782399125512257536
author Silvennoinen, Mika
Ahtiainen, Juha P
Hulmi, Juha J
Pekkala, Satu
Taipale, Ritva S
Nindl, Bradley C
Laine, Tanja
Häkkinen, Keijo
Selänne, Harri
Kyröläinen, Heikki
Kainulainen, Heikki
author_facet Silvennoinen, Mika
Ahtiainen, Juha P
Hulmi, Juha J
Pekkala, Satu
Taipale, Ritva S
Nindl, Bradley C
Laine, Tanja
Häkkinen, Keijo
Selänne, Harri
Kyröläinen, Heikki
Kainulainen, Heikki
author_sort Silvennoinen, Mika
collection PubMed
description The primary aim of the present study was to investigate the acute gene expression responses of PGC-1 isoforms and PGC-1α target genes related to mitochondrial biogenesis (cytochrome C), angiogenesis (VEGF-A), and muscle hypertrophy (myostatin), after a resistance or endurance exercise bout. In addition, the study aimed to elucidate whether the expression changes of studied transcripts were linked to phosphorylation of AMPK and MAPK p38. Nineteen physically active men were divided into resistance exercise (RE, n = 11) and endurance exercise (EE, n = 8) groups. RE group performed leg press exercise (10 × 10 RM, 50 min) and EE walked on a treadmill (∼80% HR(max), 50 min). Muscle biopsies were obtained from the vastus lateralis muscle before, 30 min, and 180 min after exercise. EE and RE significantly increased the gene expression of alternative promoter originated PGC-1α exon 1b- and 1bxs’-derived isoforms, whereas the proximal promoter originated exon 1a-derived transcripts were less inducible and were upregulated only after EE. Truncated PGC-1α transcripts were upregulated both after EE and RE. Neither RE nor EE affected the expression of PGC-1β. EE upregulated the expression of cytochrome C and VEGF-A, whereas RE upregulated VEGF-A and downregulated myostatin. Both EE and RE increased the levels of p-AMPK and p-MAPK p38, but these changes were not linked to the gene expression responses of PGC-1 isoforms. The present study comprehensively assayed PGC-1 transcripts in human skeletal muscle and showed exercise mode-specific responses thus improving the understanding of early signaling events in exercise-induced muscle adaptations.
format Online
Article
Text
id pubmed-4632948
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher John Wiley & Sons, Ltd
record_format MEDLINE/PubMed
spelling pubmed-46329482015-11-09 PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise Silvennoinen, Mika Ahtiainen, Juha P Hulmi, Juha J Pekkala, Satu Taipale, Ritva S Nindl, Bradley C Laine, Tanja Häkkinen, Keijo Selänne, Harri Kyröläinen, Heikki Kainulainen, Heikki Physiol Rep Original Research The primary aim of the present study was to investigate the acute gene expression responses of PGC-1 isoforms and PGC-1α target genes related to mitochondrial biogenesis (cytochrome C), angiogenesis (VEGF-A), and muscle hypertrophy (myostatin), after a resistance or endurance exercise bout. In addition, the study aimed to elucidate whether the expression changes of studied transcripts were linked to phosphorylation of AMPK and MAPK p38. Nineteen physically active men were divided into resistance exercise (RE, n = 11) and endurance exercise (EE, n = 8) groups. RE group performed leg press exercise (10 × 10 RM, 50 min) and EE walked on a treadmill (∼80% HR(max), 50 min). Muscle biopsies were obtained from the vastus lateralis muscle before, 30 min, and 180 min after exercise. EE and RE significantly increased the gene expression of alternative promoter originated PGC-1α exon 1b- and 1bxs’-derived isoforms, whereas the proximal promoter originated exon 1a-derived transcripts were less inducible and were upregulated only after EE. Truncated PGC-1α transcripts were upregulated both after EE and RE. Neither RE nor EE affected the expression of PGC-1β. EE upregulated the expression of cytochrome C and VEGF-A, whereas RE upregulated VEGF-A and downregulated myostatin. Both EE and RE increased the levels of p-AMPK and p-MAPK p38, but these changes were not linked to the gene expression responses of PGC-1 isoforms. The present study comprehensively assayed PGC-1 transcripts in human skeletal muscle and showed exercise mode-specific responses thus improving the understanding of early signaling events in exercise-induced muscle adaptations. John Wiley & Sons, Ltd 2015-10-05 /pmc/articles/PMC4632948/ /pubmed/26438733 http://dx.doi.org/10.14814/phy2.12563 Text en © 2015 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of the American Physiological Society and The Physiological Society. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Silvennoinen, Mika
Ahtiainen, Juha P
Hulmi, Juha J
Pekkala, Satu
Taipale, Ritva S
Nindl, Bradley C
Laine, Tanja
Häkkinen, Keijo
Selänne, Harri
Kyröläinen, Heikki
Kainulainen, Heikki
PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
title PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
title_full PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
title_fullStr PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
title_full_unstemmed PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
title_short PGC-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
title_sort pgc-1 isoforms and their target genes are expressed differently in human skeletal muscle following resistance and endurance exercise
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4632948/
https://www.ncbi.nlm.nih.gov/pubmed/26438733
http://dx.doi.org/10.14814/phy2.12563
work_keys_str_mv AT silvennoinenmika pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT ahtiainenjuhap pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT hulmijuhaj pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT pekkalasatu pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT taipaleritvas pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT nindlbradleyc pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT lainetanja pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT hakkinenkeijo pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT selanneharri pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT kyrolainenheikki pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise
AT kainulainenheikki pgc1isoformsandtheirtargetgenesareexpresseddifferentlyinhumanskeletalmusclefollowingresistanceandenduranceexercise