DNA damage responses and p53 in the aging process

Author:

Ou Hui-Ling123,Schumacher Björn1234ORCID

Affiliation:

1. Institute for Genome Stability in Aging and Disease, Medical Faculty,

2. Cologne Excellence Cluster for Cellular Stress Responses in Aging-Associated Diseases,

3. Systems Biology of Aging Cologne, and

4. Center for Molecular Medicine, University of Cologne, Cologne, Germany

Abstract

Abstract The genome is constantly attacked by genotoxic insults. DNA damage has long been established as a cause of cancer development through its mutagenic consequences. Conversely, radiation therapy and chemotherapy induce DNA damage to drive cells into apoptosis or senescence as outcomes of the DNA damage response (DDR). More recently, DNA damage has been recognized as a causal factor for the aging process. The role of DNA damage in aging and age-related diseases is illustrated by numerous congenital progeroid syndromes that are caused by mutations in genome maintenance pathways. During the past 2 decades, understanding how DDR drives cancer development and contributes to the aging process has progressed rapidly. It turns out that the DDR factor p53 takes center stage during tumor development and also plays an important role in the aging process. Studies in metazoan models ranging from Caenorhabditis elegans to mammals have revealed cell-autonomous and systemic DDR mechanisms that orchestrate adaptive responses that augment maintenance of the aging organism amid gradually accumulating DNA damage.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference111 articles.

1. Endogenous DNA damage in humans: a review of quantitative data;De Bont;Mutagenesis,2004

2. The current state of eukaryotic DNA base damage and repair;Bauer;Nucleic Acids Res,2015

3. Single-strand break repair and genetic disease;Caldecott;Nat Rev Genet,2008

4. Genome instability in development and aging: Insights from nucleotide excision repair in humans, mice, and worms;Edifizi;Biomolecules,2015

5. The DNA damage response: making it safe to play with knives;Ciccia;Mol Cell,2010

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