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ATGL-mediated fat catabolism regulates cardiac mitochondrial function via PPAR-? and PGC-1.


ABSTRACT: Peroxisome proliferator-activated receptors (PPARs) are nuclear hormone receptors that regulate genes involved in energy metabolism and inflammation. For biological activity, PPARs require cognate lipid ligands, heterodimerization with retinoic X receptors, and coactivation by PPAR-? coactivator-1? or PPAR-? coactivator-1? (PGC-1? or PGC-1?, encoded by Ppargc1a and Ppargc1b, respectively). Here we show that lipolysis of cellular triglycerides by adipose triglyceride lipase (patatin-like phospholipase domain containing protein 2, encoded by Pnpla2; hereafter referred to as Atgl) generates essential mediator(s) involved in the generation of lipid ligands for PPAR activation. Atgl deficiency in mice decreases mRNA levels of PPAR-? and PPAR-? target genes. In the heart, this leads to decreased PGC-1? and PGC-1? expression and severely disrupted mitochondrial substrate oxidation and respiration; this is followed by excessive lipid accumulation, cardiac insufficiency and lethal cardiomyopathy. Reconstituting normal PPAR target gene expression by pharmacological treatment of Atgl-deficient mice with PPAR-? agonists completely reverses the mitochondrial defects, restores normal heart function and prevents premature death. These findings reveal a potential treatment for the excessive cardiac lipid accumulation and often-lethal cardiomyopathy in people with neutral lipid storage disease, a disease marked by reduced or absent ATGL activity.

SUBMITTER: Haemmerle G 

PROVIDER: S-EPMC3244833 | biostudies-literature | 2011 Aug

REPOSITORIES: biostudies-literature

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ATGL-mediated fat catabolism regulates cardiac mitochondrial function via PPAR-α and PGC-1.

Haemmerle Guenter G   Moustafa Tarek T   Woelkart Gerald G   Büttner Sabrina S   Schmidt Albrecht A   van de Weijer Tineke T   Hesselink Matthijs M   Jaeger Doris D   Kienesberger Petra C PC   Zierler Kathrin K   Schreiber Renate R   Eichmann Thomas T   Kolb Dagmar D   Kotzbeck Petra P   Schweiger Martina M   Kumari Manju M   Eder Sandra S   Schoiswohl Gabriele G   Wongsiriroj Nuttaporn N   Pollak Nina M NM   Radner Franz P W FP   Preiss-Landl Karina K   Kolbe Thomas T   Rülicke Thomas T   Pieske Burkert B   Trauner Michael M   Lass Achim A   Zimmermann Robert R   Hoefler Gerald G   Cinti Saverio S   Kershaw Erin E EE   Schrauwen Patrick P   Madeo Frank F   Mayer Bernd B   Zechner Rudolf R  

Nature medicine 20110821 9


Peroxisome proliferator-activated receptors (PPARs) are nuclear hormone receptors that regulate genes involved in energy metabolism and inflammation. For biological activity, PPARs require cognate lipid ligands, heterodimerization with retinoic X receptors, and coactivation by PPAR-γ coactivator-1α or PPAR-γ coactivator-1β (PGC-1α or PGC-1β, encoded by Ppargc1a and Ppargc1b, respectively). Here we show that lipolysis of cellular triglycerides by adipose triglyceride lipase (patatin-like phosphol  ...[more]

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