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Updated: Apr 20, 2026

Inducible and Reversible Dominant-negative DN Protein Inhibition
Published on: January 7, 2019
Improved metabolic regulation is associated with retinoblastoma protein gene haploinsufficiency in mice
Petar D Petrov1, Joan Ribot2, Andreu Palou1
1Laboratory of Molecular Biology, Nutrition, and Biotechnology-Nutrigenomics, University of the Balearic Islands, Palma de Mallorca, Spain; and CIBER Fisiopatología de la Obesidad y Nutrición, Spain.
Abstract:
Retinoblastoma protein (pRb) is involved in the control of energy metabolism, and its inactivation protects mice against high-fat diet-induced diabesity. Here, we tested the hypothesis that partial deficiency in the Rb gene could confer metabolic advantages in front of acute challenges to metabolism and as mice age on a regular diet. Rb haploinsufficient (Rb(+/-)) mice and wild-type (WT) littermates were studied from weaning and characterized at 1.5-2.5 mo of age (young adults) and 6-7.5 mo of age (mature adults). Whereas no differences in body weight or composition were observed at young age, mature adult Rb(+/-) mice were leaner than WT littermates, displaying 36% reduced body fat content. At both ages studied, Rb(+/-) mice displayed improved blood lipids, enhanced sensitivity to the blood glucose-lowering effect of insulin and to the anorectic effect of leptin, and a reduced respiratory exchange ratio, indicative of an increased use of fatty acids as a fuel. Insulin sensitivity and oral fat tolerance were better maintained with age in the Rb(+/-) than the WT mice. Mature adult Rb(+/-) mice displayed gene expression changes consistent with increased fatty acid oxidation in white adipose tissue and skeletal muscle and paramount signs of browning in the inguinal white adipose tissue. In conclusion, Rb haploinsufficiency provides metabolic advantages in front of acute metabolic stressors and ameliorates body fat gain and metabolic impairments that normally accompany transition from young to mature adult age.
Insights
Partial deficiency in the Retinoblastoma gene (Rb(+/-)) improves metabolism and reduces body fat in aging mice. These mice show enhanced insulin sensitivity and fatty acid utilization, offering metabolic advantages.
Area of Science:
- Metabolic research
- Molecular biology
- Aging studies
Background:
- Retinoblastoma protein (pRb) influences energy metabolism.
- pRb inactivation protects against diet-induced obesity and diabetes.
- The role of partial Rb deficiency in metabolic health during aging is unclear.
Purpose of the Study:
- To investigate if partial Rb gene deficiency (Rb(+/-)) confers metabolic advantages.
- To assess metabolic health in Rb(+/-) mice during aging on a regular diet.
- To evaluate responses to acute metabolic challenges.
Main Methods:
- Comparison of Rb(+/-) mice and wild-type (WT) littermates from weaning.
- Metabolic characterization at young (1.5-2.5 months) and mature adult (6-7.5 months) stages.
- Analysis of body composition, blood lipids, insulin sensitivity, leptin response, respiratory exchange ratio, and gene expression.
Main Results:
- Mature Rb(+/-) mice were leaner (36% less body fat) than WT littermates.
- Rb(+/-) mice exhibited improved blood lipids, enhanced insulin and leptin sensitivity, and increased fatty acid oxidation (lower RER).
- Insulin sensitivity and oral fat tolerance were better maintained with age in Rb(+/-) mice, with evidence of adipose tissue browning.
Conclusions:
- Rb haploinsufficiency provides metabolic benefits against acute stressors.
- Partial Rb deficiency ameliorates age-related metabolic decline and reduces body fat gain.
- Rb(+/-) mice demonstrate enhanced metabolic flexibility and improved lipid and glucose homeostasis.
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