Lactate overload inhibits myogenic activity in C2C12 myotubes

Author:

Oh Sarah Se-Jung1,Kim Sujin23,Moon Sohee3,Park Dong-Ho4,Kang Ju-Hee5

Affiliation:

1. Korea International School, Pangyo, Republic of Korea

2. Department of Kinesiology, Inha UniversityIncheon, South Korea

3. Department of Pharmacology, Hypoxia-related Disease Research Center, College of Medicine, Inha University, Incheon, Republic of Korea

4. Department of Kinesiology, Inha University, 100, Inha-Ro, Nam-gu, Incheon 22212, Republic of Korea

5. Department of Pharmacology and Medicinal Toxicology Research Center, Hypoxia-related Diseases Research Center, Inha University School of Medicine, Room 1015, 60th Anniversary Hall, 100, Inha-ro, Nam-gu, Incheon 22212, Republic of Korea

Abstract

AbstractLactate (LA), an endogenous metabolite produced from pyruvate, can accumulate in skeletal muscle in certain conditions including major diseases, as well as during intensive exercise. Using differentiated C2C12 myotubes, we evaluated the early (1-h) and delayed (24-h) effects of LA (8 mM) on mechanisms involved in myogenesis or muscle atrophy, including 5'-adenosine monophosphate-activated protein kinase (AMPK)-mediated inhibition of protein synthesis through the mTOR/P70-S6K pathway, Akt-mediated inhibition of expression of the MAFbx atrophic factor by FOXO3a and expression of the myogenic transcription factors, MyoD, myogenin and myosin heavy chain. Although the early effects of LA overload were not significant on myogenic or atrophic mechanisms, LA treatment for 24 h significantly activated atrophic mechanisms but suppressed myogenesis in myotubes. In addition, LA overload for 24 h significantly suppressed the expression of Sirtuin 1 and peroxisome proliferator-activated receptor gamma coactivator-1 alpha. Consistent with LA-induced activation of atrophic mechanisms, the diameter of C2C12 myotubes treated with LA for 24 h, but not for 1 h, was significantly lower than in control myotubes. Thus, a sustained, but not a transient, LA overload could induce muscle atrophy through the regulation of AMPK- and Akt-mediated pathways, although further in vivo studies are needed to confirm this.

Publisher

Walter de Gruyter GmbH

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

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