| Literature DB >> 25645620 |
Christian Baumeier1, Daniel Kaiser1, Jörg Heeren2, Ludger Scheja2, Clara John2, Christoph Weise3, Murat Eravci3, Merit Lagerpusch1, Gunnar Schulze1, Hans-Georg Joost1, Robert Wolfgang Schwenk1, Annette Schürmann4.
Abstract
Caloric restriction and intermittent fasting are known to improve glucose homeostasis and insulin resistance in several species including humans. The aim of this study was to unravel potential mechanisms by which these interventions improve insulin sensitivity and protect from type 2 diabetes. Diabetes-susceptible New Zealand Obese mice were either 10% calorie restricted (CR) or fasted every other day (IF), and compared to ad libitum (AL) fed control mice. AL mice showed a diabetes prevalence of 43%, whereas mice under CR and IF were completely protected against hyperglycemia. Proteomic analysis of hepatic lipid droplets revealed significantly higher levels of PSMD9 (co-activator Bridge-1), MIF (macrophage migration inhibitor factor), TCEB2 (transcription elongation factor B (SIII), polypeptide 2), ACY1 (aminoacylase 1) and FABP5 (fatty acid binding protein 5), and a marked reduction of GSTA3 (glutathione S-transferase alpha 3) in samples of CR and IF mice. In addition, accumulation of diacylglycerols (DAGs) was significantly reduced in livers of IF mice (P=0.045) while CR mice showed a similar tendency (P=0.062). In particular, 9 DAG species were significantly reduced in response to IF, of which DAG-40:4 and DAG-40:7 also showed significant effects after CR. This was associated with a decreased PKCε activation and might explain the improved insulin sensitivity. In conclusion, our data indicate that protection against diabetes upon caloric restriction and intermittent fasting associates with a modulation of lipid droplet protein composition and reduction of intracellular DAG species.Entities:
Keywords: Caloric restriction; Diacylglycerol; Fatty acid oxidation; Insulin resistance; Intermittent fasting; Lipid droplet proteome
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Year: 2015 PMID: 25645620 DOI: 10.1016/j.bbalip.2015.01.013
Source DB: PubMed Journal: Biochim Biophys Acta ISSN: 0006-3002