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Updated: Jun 15, 2026

Assessment of the Metabolic Effects of Isocaloric 2:1 Intermittent Fasting in Mice
Published on: November 27, 2019
FoxO1 is involved in the antineoplastic effect of calorie restriction
Haruyoshi Yamaza1, Toshimitsu Komatsu, Saori Wakita
1Department of Investigative Pathology, Nagasaki University, Japan.
Abstract:
The FoxO transcription factors may be involved in the antiaging effect of calorie restriction (CR) in mammals. To test the hypothesis, we used FoxO1 knockout heterozygotic (HT) mice, in which the FoxO1 mRNA level was reduced by 50%, or less, of that in wild-type (WT) mouse tissues. The WT and HT mice were fed ad libitum (AL) or 30% CR diets from 12 weeks of age. Aging- and CR-related changes in body weight, food intake, blood glucose, and insulin concentrations were similar between the WT and HT mice in the lifespan study. The response to oxidative stress, induced by intraperitoneal injection of 3-nitropropionic acid (3-NPA), was evaluated in the liver and hippocampus at 6 months of age. Several of the selected FoxO1-target genes for cell cycle arrest, DNA repair, apoptosis, and stress resistance were up-regulated in the WT-CR tissues after 3-NPA injection, while the effect was mostly diminished in the HT-CR tissues. Of these gene products, we focused on the nuclear p21 protein level in the liver and confirmed its up-regulation only in the WT-CR mice in response to oxidative stress. The lifespan did not differ significantly between the WT and HT mice in AL or CR conditions. However, the antineoplastic effect of CR, as indicated by reduced incidence of tumors at death in the WT-CR mice, was mostly abrogated in the HT-CR mice. The present results suggest a role for FoxO1 in the antineoplastic effect of CR through the induction of genes responsible for protection against oxidative and genotoxic stress.
Insights
Calorie restriction (CR) may prevent cancer by activating FoxO1. This study found that CR
Area of Science:
- Molecular Biology
- Gerontology
- Genetics
Background:
- Calorie restriction (CR) is linked to antiaging effects in mammals.
- FoxO transcription factors are potential mediators of CR's benefits.
- The specific role of FoxO1 in CR's effects remains unclear.
Purpose of the Study:
- To investigate the role of FoxO1 in the antiaging and antineoplastic effects of calorie restriction.
- To determine if reduced FoxO1 levels affect the response to oxidative stress under CR.
Main Methods:
- Utilized FoxO1 knockout heterozygotic (HT) and wild-type (WT) mice.
- Administered ad libitum (AL) or 30% CR diets.
- Assessed aging, CR-related metabolic changes, and lifespan.
- Evaluated response to oxidative stress (3-nitropropionic acid) and gene expression in liver and hippocampus.
Main Results:
- Aging and CR-related metabolic changes were similar between WT and HT mice.
- FoxO1-target genes involved in stress resistance were upregulated by CR in WT but not HT mice after oxidative stress.
- CR's antineoplastic effect, reducing tumor incidence, was abrogated in HT mice.
- Lifespan was not significantly affected by FoxO1 levels or CR.
Conclusions:
- FoxO1 plays a role in the antineoplastic effect of calorie restriction.
- This effect is mediated through the induction of genes that protect against oxidative and genotoxic stress.
- FoxO1 is crucial for CR's cancer-protective benefits, but not its lifespan extension.
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