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Norway

PMID:16054078  

"New" hepatic fat activates PPARalpha to maintain glucose, lipid, and cholesterol homeostasis.

Manu V Chakravarthy | Zhijun Pan | Yimin Zhu | Karen Tordjman | Jochen G Schneider | Trey Coleman | John Turk | Clay F Semenkovich
Cell metabolism | 2005

De novo lipogenesis is an energy-expensive process whose role in adult mammals is poorly understood. We generated mice with liver-specific inactivation of fatty-acid synthase (FAS), a key lipogenic enzyme. On a zero-fat diet, FASKOL (FAS knockout in liver) mice developed hypoglycemia and fatty liver, which were reversed with dietary fat. These phenotypes were also observed after prolonged fasting, similarly to fasted PPARalpha-deficiency mice. Hypoglycemia, fatty liver, and defects in expression of PPARalpha target genes in FASKOL mice were corrected with a PPARalpha agonist. On either zero-fat or chow diet, FASKOL mice had low serum and hepatic cholesterol levels with elevated SREBP-2, decreased HMG-CoA reductase expression, and decreased cholesterol biosynthesis; these were also corrected with a PPARalpha agonist. These results suggest that products of the FAS reaction regulate glucose, lipid, and cholesterol metabolism by serving as endogenous activators of distinct physiological pools of PPARalpha in adult liver.

Pubmed ID: 16054078

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Associated grants

  • Agency: NIA NIH HHS, United States
    Id: AG20091
  • Agency: NIDDK NIH HHS, United States
    Id: DK56341
  • Agency: NHLBI NIH HHS, United States
    Id: HL58427
  • Agency: NCRR NIH HHS, United States
    Id: P41 RR00954

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Primer Express (tool)

RRID:SCR_014326

Software that allows users to manually or automatically design custom primers and probes for gene quantitation and allelic discrimination (SNP) real-time PCR applications. It supports assays based on TaqMan and SYBR Green I dye chemistries.

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