4.6 Article

Indications of 5′ to 3′ Interbase Electron Transfer as the First Step of Pyrimidine Dimer Formation Probed by a Dinucleotide Analog

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 23, 期 31, 页码 7526-7537

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201700045

关键词

DNA photochemistry; electron transfer; pyrimidine (6-4) pyrimidone photoproduct; spore photoproduct; thymine dimer

资金

  1. National Science Foundation [CHE 1454184]
  2. Minerva Program of the Max-Planck Society
  3. National Science Foundation MRI grant [CHE-0619254, DBI-0821661]
  4. Direct For Mathematical & Physical Scien
  5. Division Of Chemistry [1454184] Funding Source: National Science Foundation

向作者/读者索取更多资源

Pyrimidine dimers are the most common DNA lesions generated under UV radiation. To reveal the molecular mechanisms behind their formation, it is of significance to reveal the roles of each pyrimidine residue. We thus replaced the 5'-pyrimidine residue with a photochemically inert xylene moiety (X). The electron-rich X can be readily oxidized but not reduced, defining the direction of interbase electron transfer (ET). Irradiation of the XpT dinucleotide under 254 nm UV light generates two major photoproducts: a pyrimidine (6-4) pyrimidone analog (6-4PP) and an analog of the so-called spore photoproduct (SP). Both products are formed by reaction at C4=O of the photo-excited 3'-thymidine (T), which indicates that excitation of a single driver residue is sufficient to trigger pyrimidine dimerization. Our quantum-chemical calculations demonstrated that photo-excited 3'-T accepts an electron from 5'-X. The resulting charge-separated radical pair lowers its energy upon formation of interbase covalent bonds, eventually yielding 6-4PP and SP.

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