Back to Search Start Over

Monitoring one-electron photo-oxidation of guanine in DNA crystals using ultrafast infrared spectroscopy.

Authors :
Hall JP
Poynton FE
Keane PM
Gurung SP
Brazier JA
Cardin DJ
Winter G
Gunnlaugsson T
Sazanovich IV
Towrie M
Cardin CJ
Kelly JM
Quinn SJ
Source :
Nature chemistry [Nat Chem] 2015 Dec; Vol. 7 (12), pp. 961-7. Date of Electronic Publication: 2015 Oct 19.
Publication Year :
2015

Abstract

To understand the molecular origins of diseases caused by ultraviolet and visible light, and also to develop photodynamic therapy, it is important to resolve the mechanism of photoinduced DNA damage. Damage to DNA bound to a photosensitizer molecule frequently proceeds by one-electron photo-oxidation of guanine, but the precise dynamics of this process are sensitive to the location and the orientation of the photosensitizer, which are very difficult to define in solution. To overcome this, ultrafast time-resolved infrared (TRIR) spectroscopy was performed on photoexcited ruthenium polypyridyl-DNA crystals, the atomic structure of which was determined by X-ray crystallography. By combining the X-ray and TRIR data we are able to define both the geometry of the reaction site and the rates of individual steps in a reversible photoinduced electron-transfer process. This allows us to propose an individual guanine as the reaction site and, intriguingly, reveals that the dynamics in the crystal state are quite similar to those observed in the solvent medium.

Details

Language :
English
ISSN :
1755-4349
Volume :
7
Issue :
12
Database :
MEDLINE
Journal :
Nature chemistry
Publication Type :
Academic Journal
Accession number :
26587711
Full Text :
https://doi.org/10.1038/nchem.2369