Noggin depletion in adipocytes promotes obesity in mice

Ana M Blázquez-Medela1, Medet Jumabay1, Prashant Rajbhandari2

  • 1Division of Cardiology, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, USA.

Molecular Metabolism
|April 28, 2019
PubMed
Abstract

Insights

Noggin, an inhibitor of bone morphogenetic proteins (BMPs), plays a crucial role in regulating adipogenesis and preventing obesity. Its absence leads to increased obesity, particularly in females, highlighting BMP antagonists as potential therapeutic targets.

Area of Science:

  • Endocrinology
  • Metabolic Regulation
  • Obesity Research

Background:

  • Obesity is a global pandemic requiring new therapeutic strategies.
  • Bone morphogenetic proteins (BMPs) are known to influence adipogenesis.
  • The role of BMP antagonists, specifically Noggin, in adipogenesis remains largely unexplored.

Purpose of the Study:

  • To investigate the role of Noggin, an extracellular BMP inhibitor, in the process of adipogenesis.
  • To determine the effects of Noggin deficiency on adipose tissue phenotype and metabolic regulation.

Main Methods:

  • Generation of adipose-derived progenitor cells.
  • Creation of a mouse model with adipocyte-specific Noggin deletion using AdiponectinCre transgenic mice.
  • Phenotypic analysis of Noggin-deficient adipose tissue in both genders.

Main Results:

  • Noggin expression decreases in mature adipocytes, potentially facilitating lipid accumulation.
  • Adipocyte-specific Noggin deletion induced age-related obesity in both genders, without altering food intake.
  • Noggin deficiency led to white adipose tissue hypertrophy and impaired brown adipose tissue function, with more pronounced effects in females.
  • Females exhibited suppressed expression of thermogenic and adipogenic genes, while males showed alterations in adipogenesis and lipid metabolism genes.
  • Both genders displayed reduced oxygen consumption and carbon dioxide production, with females also showing decreased heat production.
  • Noggin levels were reduced in diet-induced obesity models, correlating with the observed obesity phenotype.

Conclusions:

  • BMP signaling differentially regulates adipogenesis in females and males via distinct metabolic pathways.
  • Targeting BMP antagonists like Noggin may offer a strategy for managing age-related weight gain and obesity.
  • Modulating adipose tissue metabolism through BMP antagonists could be a promising therapeutic approach.

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