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      Desnutrin/ATGL activates PPARδ to promote mitochondrial function for insulin secretion in islet β cells.

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          Abstract

          Excessive caloric intake leading to obesity is associated with insulin resistance and dysfunction of islet β cells. High-fat feeding decreases desnutrin (also called ATGL/PNPLA2) levels in islets. Here we show that desnutrin ablation via RIP-Cre (βKO) or RIP-CreER results in hyperglycemia with impaired glucose-stimulated insulin secretion (GSIS). Due to decreased lipolysis, islets have higher TAG content but lower free FA levels. βKO islets exhibit impaired mitochondrial respiration and lower production of ATP required for GSIS, along with decreased expression of PPARδ target genes involved in mitochondrial oxidation. Furthermore, synthetic PPARδ, but not PPARα, agonist restores GSIS and expression of mitochondrial oxidative genes in βKO mice, revealing that desnutrin-catalyzed lipolysis generates PPARδ ligands. Finally, adenoviral expression of desnutrin in βKO islets restores all defects of βKO islet phenotype and function, including GSIS and mitochondrial defects, demonstrating the critical role of the desnutrin-PPARδ-mitochondrial oxidation axis in regulating islet β cell GSIS.

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          Author and article information

          Journal
          Cell Metab.
          Cell metabolism
          1932-7420
          1550-4131
          Dec 3 2013
          : 18
          : 6
          Affiliations
          [1 ] Endocrinology Program, University of California, Berkeley, Berkeley, CA 94720, USA.
          Article
          S1550-4131(13)00424-5 NIHMS534935
          10.1016/j.cmet.2013.10.012
          3871209
          24268737
          d7298383-a89b-4ba5-9ed9-b37ff196cf3f
          Copyright © 2013 Elsevier Inc. All rights reserved.
          History

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