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Publication : Muscle-selective knockout of AMPKα2 does not exacerbate diet-induced obesity probably related to altered myokines expression.

First Author  Chen T Year  2015
Journal  Biochem Biophys Res Commun Volume  458
Issue  3 Pages  449-55
PubMed ID  25637528 Mgi Jnum  J:220329
Mgi Id  MGI:5634226 Doi  10.1016/j.bbrc.2015.01.075
Citation  Chen T, et al. (2015) Muscle-selective knockout of AMPKalpha2 does not exacerbate diet-induced obesity probably related to altered myokines expression. Biochem Biophys Res Commun 458(3):449-55
abstractText  Dysregulation of lipid metabolism has been believed to be central in the development of skeletal muscle insulin resistance. Since first being described in 1989, the role of AMPK in energy metabolism, especially its role in lipid metabolism in skeletal muscle has been well studied. However, some recent literature report that fatty acid oxidation in skeletal muscle is not directly associated with AMPK activation and ACC phosphorylation. To further understand the role of AMPK in lipid metabolism and the development of induced obesity and insulin resistance, muscle specific AMPKalpha2 knockout mice (mAMPKalpha2-KO) was employed in this study. The results showed that AMPKalpha2 ablation in muscle did not exacerbate high fat diet induce obesity in mice. On the contrary, it improved animal glucose tolerance and insulin sensitivity, with reduced triglyceride content in skeletal muscle and fat mass in various adipose tissues, when mice were fed high fat diet for 14 weeks. Gene expression analysis revealed that AMPKalpha2 knockout up-regulated the expression of genes related to lipid catabolism and down-regulated that of genes related to triglyceride synthesis. More importantly, ablation of AMPKalpha2 altered the expression of several myokines related to adipogenesis and muscle regeneration. Our data suggest that defect in AMPKalpha2 signaling does not necessarily lead to the development of muscle insulin resistance and obesity. AMPKalpha2 may regulate whole body lipid metabolism by regulating myokine secretion.
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