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Chronic activation of AMP kinase results in NRF-1 activation and mitochondrial biogenesis

American Journal of Physiology-Endocrinology and Metabolism · 2001 · Vol. 281(6) · pp. E1340–E1346
Raynald BergeronJian RenKevin S. CadmanIrene K. MoorePascale PerretMarc PypaertLawrence H. YoungClay F. SemenkovichGerald I. Shulman

Abstract

The underlying mechanism by which skeletal muscle adapts to exercise training or chronic energy deprivation is largely unknown. To examine this question, rats were fed for 9 wk either with or without beta-guanadinopropionic acid (beta-GPA; 1% enriched diet), a creatine analog that is known to induce muscle adaptations similar to those induced by exercise training. Muscle phosphocreatine, ATP, and ATP/AMP ratios were all markedly decreased and led to the activation of AMP-activated protein kinase (AMPK) in the beta-GPA-fed rats compared with control rats. Under these conditions, nuclear respiratory factor-1 (NRF-1) binding activity, measured using a cDNA probe containing a sequence encoding for the promoter of delta-aminolevulinate (ALA) synthase, was increased by about eightfold in the muscle of beta-GPA-fed rats compared with the control group. Concomitantly, muscle ALA synthase mRNA and cytochrome c content were also increased. Mitochondrial density in both extensor digitorum longus and epitrochlearis from beta-GPA-fed rats was also increased by more than twofold compared with the control group. In conclusion, chronic phosphocreatine depletion during beta-GPA supplementation led to the activation of muscle AMPK that was associated with increased NRF-1 binding activity, increased cytochrome c content, and increased muscle mitochondrial density. Our data suggest that AMPK may play an important role in muscle adaptations to chronic energy stress and that it promotes mitochondrial biogenesis and expression of respiratory proteins through activation of NRF-1.

Adipose Tissue and MetabolismMetabolism, Diabetes, and CancerMitochondrial Function and PathologyPhosphocreatineMitochondrial biogenesisEndocrinologyInternal medicineAMPKSkeletal muscleNRF1Citrate synthaseAMP-activated protein kinaseATP synthase

MeSH terms

Adenylate Kinase5-Aminolevulinate SynthetaseAnimalsCell NucleusCytochrome c GroupDNA-Binding ProteinsEnergy MetabolismEnzyme ActivationMaleMicroscopy, ElectronMitochondria, MuscleRNA, MessengerBlotting, NorthernTrans-ActivatorsRats, Sprague-Dawley
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References
The AMP‐Activated Protein Kinase
European Journal of Biochemistry · 1997 · 1,311 citations
AICA riboside increases AMP-activated protein kinase, fatty acid oxidation, and glucose uptake in rat muscle
American Journal of Physiology-Endocrinology and Metabolism · 1997 · 1,019 citations
Inactivation of acetyl-CoA carboxylase and activation of AMP-activated protein kinase in muscle during exercise
American Journal of Physiology-Endocrinology and Metabolism · 1996 · 793 citations
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