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Published on: July 8, 2020
The REV-ERB antagonist SR8278 modulates keratinocyte viability in response to UVA and UVB radiation
William Cvammen1, Michael G Kemp1,2
1Department of Pharmacology and Toxicology, Wright State University Boonshoft School of Medicine, Dayton, Ohio, USA.
Abstract:
The nucleotide excision repair (NER) system removes UV photoproducts from genomic DNA and is controlled by the circadian clock. Given that small-molecule compounds have been developed to target various clock proteins, we examined whether the cryptochrome inhibitor KS15 and REV-ERB antagonist SR8278 could modulate keratinocyte responses to UV radiation in vitro. We observed that though SR8278 promoted cell viability in UVB-irradiated cells, it had little effect on NER or on the expression of the clock-regulated NER factor XPA. Rather, we found that both KS15 and SR8278 absorb light within the UV spectrum to limit initial UV photoproduct formation in DNA. Moreover, SR8278 promoted UVB viability even in cells in which the core circadian clock protein BMAL1 was disrupted, which indicates that SR8278 is likely acting via other REV-ERB transcriptional targets. We further observed that SR8278 sensitized keratinocytes to light sources containing primarily UVA wavelengths of light likely due to the generation of toxic reactive oxygen species. Though other studies have demonstrated beneficial effects of SR8278 in other model systems, our results here suggest that SR8278 has limited utility for UV photoprotection in the skin and will likely cause phototoxicity in humans or mammals exposed to solar radiation.
Insights
The study found that UV-absorbing compounds KS15 and SR8278 limit DNA damage but SR8278 may cause phototoxicity. These findings suggest limited utility for skin UV photoprotection.
Area of Science:
- Molecular Biology
- Dermatology
- Chronobiology
Background:
- The nucleotide excision repair (NER) system removes UV DNA damage and is regulated by the circadian clock.
- Small molecules targeting clock proteins are being developed.
Purpose of the Study:
- To investigate if cryptochrome inhibitor KS15 and REV-ERB antagonist SR8278 modulate keratinocyte responses to UV radiation.
- To assess their potential for UV photoprotection.
Main Methods:
- In vitro study using keratinocytes exposed to UV radiation.
- Treatment with KS15 and SR8278.
- Assessment of cell viability, NER activity, XPA expression, and reactive oxygen species generation.
- Evaluation in cells with disrupted BMAL1.
Main Results:
- Both KS15 and SR8278 absorb UV light, reducing initial DNA photoproduct formation.
- SR8278 improved UVB-irradiated cell viability, independent of BMAL1.
- SR8278 sensitized cells to UVA, likely via reactive oxygen species.
- SR8278 showed limited effect on NER or XPA expression.
Conclusions:
- KS15 and SR8278 limit UV-induced DNA damage by direct UV absorption.
- SR8278's benefits in other models do not translate to UV photoprotection in skin.
- SR8278 may cause UVA-induced phototoxicity, limiting its use in mammals.
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