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Photosensitization of DNA damage by glycated proteins
Georg T Wondrak1, Elaine L Jacobson, Myron K Jacobson
1Department of Pharmacology and Toxicology, College of Pharmacy, Arizona Cancer Center, University, of Arizona, Tucson, AZ, USA.
Abstract:
Photosensitized DNA damage in skin is thought to be an important mechanism of UV phototoxicity. Here we demonstrate that proteins modified by advanced glycation endproducts (AGE-proteins) are photosensitizers of DNA damage and show that multiple mechanisms are involved in AGE-sensitization. AGE-chromophores accumulate on long-lived skin proteins such as collagen and elastin as a consequence of glycation, the spontaneous amino-carbonyl reaction of protein-bound lysine and arginine residues with reactive carbonyl species. AGE-proteins accumulate in both the nucleus and the cytoplasm of mammalian cells. To test the hypothesis that protein-bound AGEs in close proximity to DNA are potent UV-photosensitizers, a simple plasmid DNA cleavage assay was established. Irradiation of supercoiled phiX 174 DNA with solar simulated light in the presence of AGE-modified bovine serum albumin or AGE-modified RNAse A induced DNA single strand breaks. The sensitization potency of the glycated protein correlated with increased AGE-modification and the unmodified protein displayed no photosensitizing activity. AGE-sensitized formation of reactive oxygen species was not fully responsible for the observed DNA damage and other mechanisms such as direct electron transfer interaction between photoexcited AGE and DNA are likely to be involved. Glycated proteins in skin may equally function as potent photosensitizers of DNA damage with implications for photoaging and photocarcinogenesis.
Insights
Advanced glycation endproduct-modified proteins (AGE-proteins) act as photosensitizers, causing DNA damage in skin. This process involves multiple mechanisms beyond reactive oxygen species, impacting skin aging and cancer risk.
Area of Science:
- Biochemistry
- Dermatology
- Molecular Biology
Background:
- Photosensitized DNA damage is a key factor in UV-induced skin toxicity.
- Advanced glycation endproducts (AGEs) accumulate on long-lived skin proteins like collagen and elastin.
- AGE-proteins are found in both cellular cytoplasm and nucleus.
Purpose of the Study:
- To investigate if AGE-modified proteins near DNA can act as potent UV photosensitizers.
- To elucidate the mechanisms involved in AGE-mediated photosensitization of DNA damage.
Main Methods:
- Established a plasmid DNA cleavage assay using UV-irradiated, AGE-modified proteins (bovine serum albumin, RNAse A).
- Quantified DNA single-strand breaks induced by solar-simulated light in the presence of AGE-proteins.
- Assessed the role of reactive oxygen species (ROS) in AGE-sensitized DNA damage.
Main Results:
- Irradiation of DNA with AGE-modified proteins induced significant single-strand breaks.
- Photosensitization potency correlated directly with the level of AGE modification.
- Unmodified proteins showed no photosensitizing activity.
- ROS formation did not fully account for the observed DNA damage, suggesting other mechanisms like direct electron transfer.
Conclusions:
- AGE-modified proteins are potent photosensitizers of DNA damage.
- Multiple mechanisms, including but not limited to ROS, contribute to AGE-sensitization.
- Accumulation of AGE-proteins in skin may play a significant role in photoaging and photocarcinogenesis.