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◆ Cell2026-09-09

Caloric restriction modulates genome-wide somatic mutation in mice.

Marta Grońska-Pęski, Victoria Acosta-Rodríguez, Amoolya Srinivasa, Amanda Garrido, Shany Picciotto, Carla B Green, Joseph S Takahashi, Jonathan E Shoag, Gilad D Evrony

原始摘要(英文原文)· Original abstract
Somatic mutations accumulate throughout life in every cell, and this process constitutes one of the hallmarks of aging-genomic instability. Caloric restriction (CR) has been shown to extend lifespan across diverse species. Using high-fidelity duplex DNA sequencing of bulk liver, bulk kidney, hepatocytes, and cerebellar neurons, we found that CR in mice reduces genome-wide somatic mutation burdens across multiple tissues and cell types. CR reduced both substitution and insertion/deletion burdens, with the magnitude of these effects varying across sample types. CR also decreased the activity of the enigmatic single-base substitution (SBS) mutational process SBS5 that gives rise to most mutations in mammals. Surprisingly, the mutation burden reduction from CR was greatest in transcriptionally inactive regions. This work illuminates links between diet, aging, and genomic integrity and establishes genomic integrity as a modifiable axis of aging.
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Caloric restriction modulates genome-wide somatic mutation in mice. — 科研速览 Science Skim