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Published on: July 3, 2015
From Genome to Geroscience: How DNA Damage Shapes Systemic Decline
Athanasios Siametis1,2, George A Garinis1,2
1Institute of Molecular Biology and Biotechnology (IMBB), Foundation for Research and Technology-Hellas, Heraklion, Crete, Greece.
Abstract:
Persistent genomic instability compromises cellular viability while also triggers non-cell-autonomous responses that drive dysfunction across tissues, contributing to aging. Recent evidence suggests that DNA damage activates secretory programs, including the release of inflammatory cytokines, damage-associated molecular patterns, and extracellular vesicles, that reshape immune homeostasis, stem cell function, and metabolic balance. Although these responses may initially support tissue integrity and organismal survival, their chronic activation has been associated with tissue degenerative changes and systemic decline. Here, we discuss how nuclear DNA damage responses trigger the activation of cytoplasmic sensing pathways, promote secretory phenotypes, and affect organismal physiology. Targeting DNA damage-driven mechanisms may help buffer harmful systemic responses while preserving regeneration and immune surveillance, offering new ways to delay aging-related decline.
Insights
Genomic instability from DNA damage triggers harmful inflammation and tissue decline, accelerating aging. Targeting these DNA damage responses may offer new strategies to delay age-related diseases.
Area of Science:
- Cellular and Molecular Biology
- Aging Research
- Immunology
Background:
- Persistent genomic instability impairs cell function and promotes aging.
- DNA damage activates inflammatory and secretory responses impacting tissue homeostasis.
Purpose of the Study:
- To explore how nuclear DNA damage responses activate cytoplasmic pathways.
- To understand the link between DNA damage, secretory phenotypes, and organismal aging.
Main Methods:
- Review of recent evidence on DNA damage response pathways.
- Analysis of non-cell-autonomous responses to genomic instability.
Main Results:
- DNA damage triggers inflammatory cytokines, damage-associated molecular patterns, and extracellular vesicles.
- Chronic activation of these responses contributes to tissue degeneration and systemic decline.
Conclusions:
- Targeting DNA damage mechanisms can mitigate harmful systemic responses.
- Interventions may preserve regeneration and immune surveillance, potentially delaying aging.
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