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The Plasticity of Aging: Insights from Long-Lived Mutants

CellPublished 1 February 2005Open access
Cynthia Kenyon
Citations1,336
SJR quartileQ1
SJR score22.61
SNIP7.62
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TL;DR

Mutations in genes affecting endocrine signaling, stress responses, metabolism, and telomeres can all increase the life spans of model organisms, leading to a mechanistic understanding of how these two processes--aging and disease susceptibility--are linked.

Abstract

Mutations in genes affecting endocrine signaling, stress responses, metabolism, and telomeres can all increase the life spans of model organisms. These mutations have revealed evolutionarily conserved pathways for aging, some of which appear to extend life span in response to sensory cues, caloric restriction, or stress. Many mutations affecting longevity pathways delay age-related disease, and the molecular analysis of these pathways is leading to a mechanistic understanding of how these two processes--aging and disease susceptibility--are linked.

Keywords

MedicineNeuroscienceBiochemistry, Genetics and Molecular Biology