Molecular Data for a Biochemical Model of DNA Damage: Electron Impact Ionization and Dissociative Ionization Cross Sections of DNA Bases and Sugar- Phosphate Backbone

نویسندگان

  • Winifred M. Huo
  • Christopher E. Dateo
  • Graham D. Fletcher
چکیده

As part of the database for building up a biochemical model of DNA radiation damage, electron impact ionization cross sections of sugar-phosphate backbone and DNA bases have been calculated using the improved binary-encounter dipole (iBED) model. It is found that the total ionization cross sections of C3’and C5’-deoxyribose-phosphate, two conformers of the sugar-phosphate backbone, are close to each other. Furthermore, the sum of the ionization cross sections of the separate deoxyribose and phosphate fragments is in close agreement with the C3’and C5’-deoxyribose-phospate cross sections, differing by less than 10%, an indication that a building-up principle may be applicable. Of the four DNA bases, the ionization cross section of guanine is the largest, then in decreasing order, adenine, thymine, and cytosine. The order is in accordance with the known propensity of oxidation of the bases by ionizing radiation. Dissociative ionization (DI), a process that both ionizes and dissociates a molecule, is investigated for cytosine. The DI cross section for the formation of H and (cytosine-H1), with the cytosine ion losing H at the 1 position, is also reported. The threshold of this process is calculated to be 16.9 eV. Detailed analysis of ionization products such as in DI is important to trace the sequential steps in the biochemical process of DNA damage. 1 Corresponding author, [email protected] 2 ELORET Corp., Sunnyvale, CA, USA 3 Now at CCLRC Daresbury Laboratory, Daresbury, Cheshire, WA4 4AD, UK NAS Technical Report; NAS-06-009 August 2006

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تاریخ انتشار 2006