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Isolation and Culturing of Primary Murine Adipocytes from Lean and Obese Mice
Published on: January 24, 2025
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.
Objective:
Obesity has increased to pandemic levels and enhanced understanding of adipose regulation is required for new treatment strategies. Although bone morphogenetic proteins (BMPs) influence adipogenesis, the effect of BMP antagonists such as Noggin is largely unknown. The aim of the study was to define the role of Noggin, an extracellular BMP inhibitor, in adipogenesis.
Methods:
We generated adipose-derived progenitor cells and a mouse model with adipocyte-specific Noggin deletion using the AdiponectinCre transgenic mouse, and determined the adipose phenotype of Noggin-deficiency.
Results:
Our studies showed that Noggin is expressed in progenitor cells but declines in adipocytes, possibly allowing for lipid accumulation. Correspondingly, adipocyte-specific Noggin deletion in vivo promoted age-related obesity in both genders with no change in food intake. Although the loss of Noggin caused white adipose tissue hypertrophy, and whitening and impaired function in brown adipose tissue in both genders, there were clear gender differences with the females being most affected. The females had suppressed expression of brown adipose markers and thermogenic genes including peroxisome proliferator activated receptor gamma coactivator 1 alpha (PGC1alpha) and uncoupling protein 1 (UCP1) as well as genes associated with adipogenesis and lipid metabolism. The males, on the other hand, had early changes in a few BAT markers and thermogenic genes, but the main changes were in the genes associated with adipogenesis and lipid metabolism. Further characterization revealed that both genders had reductions in VO2, VCO2, and RER, whereas females also had reduced heat production. Noggin was also reduced in diet-induced obesity in inbred mice consistent with the obesity phenotype of the Noggin-deficient mice.
Conclusions:
BMP signaling regulates female and male adipogenesis through different metabolic pathways. Modulation of adipose tissue metabolism by select BMP antagonists may be a strategy for long-term regulation of age-related weight gain and obesity.
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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