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Beta-carotene reduces body adiposity of mice via BCMO1
Jaume Amengual1, Erwan Gouranton, Yvonne G J van Helden
1Laboratory of Molecular Biology, Nutrition and Biotechnology, Universitat de les Illes Balears and CIBER de Fisiopatología de la Obesidad y Nutrición (CIBERobn), Palma de Mallorca, Spain.
Abstract:
Evidence from cell culture studies indicates that β-carotene-(BC)-derived apocarotenoid signaling molecules can modulate the activities of nuclear receptors that regulate many aspects of adipocyte physiology. Two BC metabolizing enzymes, the BC-15,15'-oxygenase (Bcmo1) and the BC-9',10'-oxygenase (Bcdo2) are expressed in adipocytes. Bcmo1 catalyzes the conversion of BC into retinaldehyde and Bcdo2 into β-10'-apocarotenal and β-ionone. Here we analyzed the impact of BC on body adiposity of mice. To genetically dissect the roles of Bcmo1 and Bcdo2 in this process, we used wild-type and Bcmo1(-/-) mice for this study. In wild-type mice, BC was converted into retinoids. In contrast, Bcmo1(-/-) mice showed increased expression of Bcdo2 in adipocytes and β-10'-apocarotenol accumulated as the major BC derivative. In wild-type mice, BC significantly reduced body adiposity (by 28%), leptinemia and adipocyte size. Genome wide microarray analysis of inguinal white adipose tissue revealed a generalized decrease of mRNA expression of peroxisome proliferator-activated receptor γ (PPARγ) target genes. Consistently, the expression of this key transcription factor for lipogenesis was significantly reduced both on the mRNA and protein levels. Despite β-10'-apocarotenoid production, this effect of BC was absent in Bcmo1(-/-) mice, demonstrating that it was dependent on the Bcmo1-mediated production of retinoids. Our study evidences an important role of BC for the control of body adiposity in mice and identifies Bcmo1 as critical molecular player for the regulation of PPARγ activity in adipocytes.
Insights
Beta-carotene (BC) reduces body fat in mice by influencing retinoid production via the Bcmo1 enzyme. This pathway is crucial for regulating adipocyte activity and controlling body adiposity.
Area of Science:
- Metabolic regulation
- Nutritional science
- Molecular endocrinology
Background:
- Apocarotenoid signaling molecules derived from beta-carotene (BC) influence adipocyte physiology via nuclear receptors.
- Two key enzymes, BC-15,15'-oxygenase (Bcmo1) and BC-9',10'-oxygenase (Bcdo2), metabolize BC in adipocytes.
Purpose of the Study:
- To investigate the impact of beta-carotene (BC) on body adiposity in mice.
- To genetically dissect the roles of Bcmo1 and Bcdo2 in BC-mediated regulation of adiposity.
Main Methods:
- Utilized wild-type and Bcmo1 knockout mice to study BC metabolism and its effects.
- Analyzed BC derivatives, body adiposity, leptin levels, adipocyte size, and gene expression (microarray) in adipose tissue.
- Assessed mRNA and protein levels of peroxisome proliferator-activated receptor γ (PPARγ).
Main Results:
- In wild-type mice, BC reduced body adiposity by 28%, lowered leptinemia, and decreased adipocyte size.
- BC treatment led to decreased expression of PPARγ target genes and reduced PPARγ expression (mRNA and protein).
- These effects were dependent on Bcmo1 activity, as Bcmo1(-/-) mice did not exhibit reduced adiposity despite altered BC metabolism.
Conclusions:
- Beta-carotene plays a significant role in controlling body adiposity in mice.
- Bcmo1 is essential for BC's effect on adiposity, mediating retinoid production that regulates PPARγ activity in adipocytes.
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