Published July 23, 1991 | Version v1
Journal article

Formation of cyclobutane thymine dimers photosensitized by pyridopsoralens: Quantitative and qualitative distribution within DNA

  • 1. Section de Physique et Chimie et Univ. Paris VI (France)
  • 2. Centre d'Etudes Nucleaires, Grenoble (France)
  • 3. CNRS, Paris (France)

Description

As after irradiation with 254-nm UV light, exposure of thymidine and three isomeric pyridopsoralen derivatives to UVA radiation, in the dry state, leads to the formation of the six diastereomers of cyclobutadithymidine as the predominant reaction. This unexpected photosensitized reaction, which also gives rise to both 5R* and 5S* diastereomers of 5,6-dihydro-5-(α-thymidylyl)thymidine (or spore photoproduct), is selective since [2+2] dimerization of 2'-deoxycytidine was not detected under the same experimental conditions. The cis-syn isomer of cyclobutadithymine was also found to be produced within isolated DNA following UVA irradiation in aqueous solutions containing 7-methylpyrido [3,4-c]psoralen. Quantitatively, this photoproduct represents about one-fifth of the overall yield of the furan-side pyridopsoralen [2+2] photocycloadducts the thymine. DNA sequencing methodology was used to demonstrate that pyridopsoralen-photosensitized DNA is a substrate for T4 endonuclease V and Escherichia coli photoreactivating enzyme, two enzymes acting specifically on cyclobutane pyrimidine dimers. The formation of cyclobutane thymine dimers concomitant to that of thymine-furocoumarin photoadducts and their eventual implication in the photobiological effects of the pyridopsoralens are discussed

Additional details

Publishing Information

Journal Title
Biochemistry
Journal Volume
30
Journal Issue
29
Series
Biochemistry.
Journal Page Range
7080-7088
ISSN
0006-2960
CODEN
BICHA