A potential role for Akt/FOXO signalling in both protein loss and the impairment of muscle carbohydrate oxidation during sepsis in rodent skeletal muscle
- 15 November 2008
- journal article
- research article
- Published by Wiley in The Journal of Physiology
- Vol. 586 (22) , 5589-5600
- https://doi.org/10.1113/jphysiol.2008.160150
Abstract
Sepsis causes muscle atrophy and insulin resistance, but the underlying mechanisms are unclear. Therefore, the present study examined the effects of lipopolysaccharide (LPS)-induced endotoxaemia on the expression of Akt, Forkhead Box O (FOXO) and its downstream targets, to identify any associations between changes in FOXO-dependent processes influencing muscle atrophy and insulin resistance during sepsis. Chronically instrumented male Sprague–Dawley rats received a continuous intravenous infusion of LPS (15 μg kg−1 h−1) or saline for 24 h at 0.4 ml h−1. Animals were terminally anaesthetized and the extensor digitorum longus muscles from both hindlimbs were removed and snap-frozen. Measurements were made of mRNA and protein expression of selected signalling molecules associated with pathways regulating protein synthesis and degradation and carbohydrate metabolism. LPS infusion induced increases in muscle tumour necrosis factor-α (8.9-fold, P < 0.001) and interleukin-6 (8.4-fold, P < 0.01), paralleled by reduced insulin receptor substrate-1 mRNA expression (−0.7-fold, P < 0.01), and decreased Akt1 protein and cytosolic FOXO1 and FOXO3 phosphorylation. These changes were accompanied by significant increases in muscle atrophy F-box mRNA (5.5-fold, P < 0.001) and protein (2-fold, P < 0.05) expression, and pyruvate dehydrogenase kinase 4 mRNA (15-fold, P < 0.001) and protein (1.6-fold, P < 0.05) expression. There was a 29% reduction in the muscle protein: DNA ratio, a 56% reduction in pyruvate dehydrogenase complex (PDC) activity (P < 0.05), and increased glycogen degradation and lactate accumulation. The findings of this study suggest a potential role for Akt/FOXO in the simultaneous impairment of carbohydrate oxidation, at the level of PDC, and up-regulation of muscle protein degradation, in LPS-induced endotoxaemia.Keywords
This publication has 56 references indexed in Scilit:
- Pyruvate dehydrogenase kinase-4 deficiency lowers blood glucose and improves glucose tolerance in diet-induced obese miceAmerican Journal of Physiology-Endocrinology and Metabolism, 2008
- The initiation factor eIF3-f is a major target for Atrogin1/MAFbx function in skeletal muscle atrophyThe EMBO Journal, 2008
- Temporal changes in the involvement of pyruvate dehydrogenase complex in muscle lactate accumulation during lipopolysaccharide infusion in ratsThe Journal of Physiology, 2008
- The E3 Ligase MuRF1 Degrades Myosin Heavy Chain Protein in Dexamethasone-Treated Skeletal MuscleCell Metabolism, 2007
- PPARδ agonism induces a change in fuel metabolism and activation of an atrophy programme, but does not impair mitochondrial function in rat skeletal muscleThe Journal of Physiology, 2007
- Calpain activation causes a proteasome‐dependent increase in protein degradation and inhibits the Akt signalling pathway in rat diaphragm muscleExperimental Physiology, 2007
- Degradation of MyoD Mediated by the SCF (MAFbx) Ubiquitin LigaseJournal of Biological Chemistry, 2005
- The IGF-1/PI3K/Akt Pathway Prevents Expression of Muscle Atrophy-Induced Ubiquitin Ligases by Inhibiting FOXO Transcription FactorsMolecular Cell, 2004
- Induction of MafBx and Murf ubiquitin ligase mRNAs in rat skeletal muscle after LPS injectionFEBS Letters, 2003
- Transcriptional co-activator PGC-1α drives the formation of slow-twitch muscle fibresNature, 2002