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Updated: Mar 17, 2026

Assessment of the Metabolic Effects of Isocaloric 2:1 Intermittent Fasting in Mice
Published on: November 27, 2019
Changes in Leptin Signaling by SOCS3 Modulate Fasting-Induced Hyperphagia and Weight Regain in Mice
João A B Pedroso1, Marina A Silveira1, Leandro B Lima1
1Department of Physiology and Biophysics (J.A.B.P., L.B.L., I.C.F., T.T.Z., A.M.R.-L., D.C.B., P.D.S.T., J.D.), Institute of Biomedical Sciences, University of São Paulo, São Paulo, 05508-000 Brazil; and Department of Anatomy (M.A.S., R.F.), Institute of Biomedical Sciences, University of São Paulo, São Paulo, 05508-900 Brazil.
Abstract:
Weight regain frequently follows interventions that reduce body weight, leading to a failure in long-term obesity treatment. Inhibitory proteins of the leptin signaling pathway, such as the suppressor of cytokine signaling 3 (SOCS3), have been studied in conditions that predispose animals to obesity. However, whether SOCS3 modulates postrestriction hyperphagia and weight regain remains unknown. Mice lacking SOCS3 protein specifically in leptin receptor (LepR)-expressing cells (LepR SOCS3 knockout [KO]) were generated and studied in fasting and refeeding conditions. LepR SOCS3 KO mice exhibited increased leptin sensitivity in the hypothalamus. Notably, LepR SOCS3 KO males and females showed attenuated food intake and weight regain after 48 hours of fasting. Postrestriction hyperleptinemia was also prevented in LepR SOCS3 KO mice. Next, we studied possible mechanisms and neural circuits involved in the SOCS3 effects. SOCS3 deletion did not prevent fasting- or refeeding-induced c-Fos expression in the arcuate nucleus of the hypothalamus (ARH) nor fasting-induced increased excitability of ARH LepR-expressing cells. On the other hand, SOCS3 ablation reduced the mRNA levels of hypothalamic orexigenic neuropeptides during fasting (neuropeptide Y, agouti-related protein, orexin, and melanin-concentrating hormone). In summary, our findings suggest that increased leptin sensitivity contributes to the maintenance of a reduced body weight after food deprivation. In addition, the attenuated postrestriction food intake observed in mutant mice was not explained by fasting-induced changes in the activity of ARH neurons but exclusively by a lower transcription of orexigenic neuropeptides during fasting. These results indicate a partial dissociation between the regulation of neuronal activity and gene expression in ARH LepR-expressing cells.
Insights
Suppressor of cytokine signaling 3 (SOCS3) deletion in leptin receptor (LepR) cells enhances leptin sensitivity, reducing food intake and weight regain after fasting in mice. This effect is linked to reduced orexigenic neuropeptide transcription.
Area of Science:
- Neuroscience
- Metabolism
- Obesity Research
Background:
- Weight regain is a major challenge in obesity treatment.
- Leptin signaling pathway inhibitors, like SOCS3, are implicated in obesity.
- The role of SOCS3 in post-fasting weight regain is unclear.
Purpose of the Study:
- To investigate if SOCS3 in LepR-expressing cells influences post-fasting hyperphagia and weight regain.
- To explore the underlying neural mechanisms and pathways involved.
Main Methods:
- Generated LepR-specific SOCS3 knockout (KO) mice.
- Studied fasting and refeeding behaviors and weight changes.
- Assessed leptin sensitivity, hypothalamic neuropeptide expression, and neuronal activity (c-Fos, cell excitability).
Main Results:
- LepR SOCS3 KO mice showed increased hypothalamic leptin sensitivity.
- KO mice exhibited reduced food intake and weight regain post-fasting.
- Postrestriction hyperleptinemia was prevented in KO mice.
- SOCS3 ablation reduced orexigenic neuropeptide mRNA levels (NPY, AgRP, Orexin, MCH) during fasting.
- Neuronal activity in the arcuate nucleus of the hypothalamus (ARH) was not solely responsible for the observed effects.
Conclusions:
- Enhanced leptin sensitivity due to SOCS3 deletion aids in maintaining reduced body weight after fasting.
- Reduced orexigenic neuropeptide transcription, not altered ARH neuronal activity, explains the attenuated postrestriction feeding in KO mice.
- Suggests a dissociation between neuronal activity and gene expression regulation in ARH LepR cells.
Related Concept Videos
Regulation of Food Intake
Metabolic States of the Body: Fasting and Starvation
Obesity
Regulation of Metabolism

