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January 15, 2002Proceedings of the National Academy of Sciences141 citationsOpen Access

A mutation in the peroxisome proliferator-activated receptor γ-binding site in the gene for the cytosolic form of phosphoenolpyruvate carboxykinase reduces adipose tissue size and fat content in mice

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YOYael OlswangHCHannah CohenOPOrit Papo

Key Points

  • This research investigates the role of glyceroneogenesis in adipose tissue by mutating the binding site of PEPCK-C.
  • Mice were genetically modified to create a mutation in the PPAR gamma binding site of the PEPCK-C gene.
  • Expression levels of PEPCK-C were assessed in various tissues, particularly adipose tissue.
  • The effects on triglyceride deposition and fat content were evaluated in white and brown adipose tissues.
  • The mutation abolished PEPCK-C expression in white adipose tissue and significantly reduced it in brown adipose tissue.
  • Epididymal white adipose tissue showed a reduction in triglyceride deposition, with 25% of mice exhibiting lipodystrophy.
  • The study found a strong correlation between hepatic triglyceride content and the size of the epididymal fat pad in the mutated mice.

Abstract

Regulation of the turnover of triglycerides in adipose tissue requires the continuous provision of 3-glycerophosphate, which may be supplied by the metabolism of glucose or by glyceroneogenesis, the de novo synthesis of 3-glycerophosphate from sources other than hexoses or glycerol. The importance of glyceroneogenesis in adipose tissue was assessed in mice by specifically eliminating the expression of the cytosolic form of phosphoenolpyruvate carboxykinase (PEPCK-C), an enzyme that plays a pivotal role in the pathway. To accomplish this, we mutated the binding site for the peroxisome proliferator-activated receptor gamma (PPAR gamma) called the peroxisome proliferator-activated receptor element (PPARE), in the 5' flanking region of the PEPCK-C gene in the mouse by homologous recombination. The mutation abolished expression of the gene in white adipose tissue and considerably reduced its expression in brown adipose tissue, whereas the level of PEPCK-C mRNA in liver and kidney remained normal. Epididymal white adipose tissue from these mice had a reduced triglyceride deposition, with 25% of the animals displaying lipodystrophy. There was also a greatly reduced level of lipid accumulation in brown adipose tissue. A strong correlation between the hepatic content of triglycerides and the size of the epididymal fat pad in PPARE(-/-) mice suggests that hepatic triglyceride synthesis predominantly utilizes free fatty acids derived from the adipose tissue. Unlike other models, PPARE(-/-) mice with lipodystrophy did not exhibit the lipodystrophy-associated features of diabetes and displayed only moderate hyperglycemia. These studies establish the importance of the PPARE site for PEPCK-C gene expression in adipose tissue and the role of PEPCK-C in the regulation of glyceroneogenesis, a pathway critical for maintaining the deposition of triglycerides in adipose tissue.

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Cite This Study

Olswang et al. (2002) studied this question.

synapsesocial.com/papers/6a0043372ff633f36577de48https://doi.org/10.1073/pnas.022616299
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