DNA damage, cellular senescence and organismal ageing: causal or correlative

Cellular senescence has long been used as a cellular model for understanding mechanisms underlying the ageing process. Compelling evidence obtained in recent years demonstrate that DNA damage is a common mediator for both replicative senescence, which is triggered by telomere shortening, and prematu...

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Veröffentlicht in:Nucleic acids research 2007-12, Vol.35 (22), p.7417-7428
Hauptverfasser: Chen, Jian-Hua, Hales, C. Nicholes, Ozanne, Susan E
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Hales, C. Nicholes
Ozanne, Susan E
description Cellular senescence has long been used as a cellular model for understanding mechanisms underlying the ageing process. Compelling evidence obtained in recent years demonstrate that DNA damage is a common mediator for both replicative senescence, which is triggered by telomere shortening, and premature cellular senescence induced by various stressors such as oncogenic stress and oxidative stress. Extensive observations suggest that DNA damage accumulates with age and that this may be due to an increase in production of reactive oxygen species (ROS) and a decline in DNA repair capacity with age. Mutation or disrupted expression of genes that increase DNA damage often result in premature ageing. In contrast, interventions that enhance resistance to oxidative stress and attenuate DNA damage contribute towards longevity. This evidence suggests that genomic instability plays a causative role in the ageing process. However, conflicting findings exist which indicate that ROS production and oxidative damage levels of macromolecules including DNA do not always correlate with lifespan in model animals. Here we review the recent advances in addressing the role of DNA damage in cellular senescence and organismal ageing.
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subjects Aging - genetics
Animals
Cellular Senescence - genetics
DNA Damage
DNA, Mitochondrial - metabolism
Humans
Survey and Summary
title DNA damage, cellular senescence and organismal ageing: causal or correlative
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