Late-life dietary folate restriction reduces biosynthetic processes without compromising healthspan in mice
Blank, H. M.; Hammer, S. E.; Boatright, L.; Roberts, C.; Heyden, K. E.; Nagarajan, A.; Tsuchiya, M.; Brun, M.; Johnson, C. D.; Stover, P. J.; Sitcheran, R.; Kennedy, B. K.; Adams, L. G.; Kaeberlein, M.; Field, M. S.; Threadgill, D. W.; Andrews-Polymenis, H. L.; Polymenis, M.
Show abstract
Folate is a vitamin required for cell growth and is present in fortified foods in the form of folic acid to prevent congenital abnormalities. The impact of low folate status on life-long health is poorly understood. We found that limiting folate levels with the folate antagonist methotrexate increased the lifespan of yeast and worms. We then restricted folate intake in aged mice and measured various health metrics, metabolites, and gene expression signatures. Limiting folate intake decreased anabolic biosynthetic processes in mice and enhanced metabolic plasticity. Despite reduced serum folate levels in mice with limited folic acid intake, these animals maintained their weight and adiposity late in life, and we did not observe adverse health outcomes. These results argue that the effectiveness of folate dietary interventions may vary depending on an individuals age and sex. A higher folate intake is advantageous during the early stages of life to support cell divisions needed for proper development. However, a lower folate intake later in life may result in healthier aging.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Ether Lipid Biosynthesis Promotes Lifespan Extension and Enables Diverse Prolongevity Paradigms 96%
- Computer prediction and genetic analysis identifies retinoic acid modulation as a driver of conserved longevity pathways in genetically-diverse Caenorhabditis nematodes 96%
- An automated feeding system for the African killifish reveals effects of dietary restriction on lifespan and allows scalable assessment of associative learning 96%
Similar papers in this journal
Similar papers in this journal
- Hexosamine pathway activation improves memory but does not extend lifespan in mice. 97%
- Inhibition of the neuromuscular acetylcholine receptor with atracurium activates FOXO/DAF-16-induced longevity 96%
- Body weight at young adulthood and association with epigenetic aging and lifespan in the BXD murine family 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.