Abstract
The dehydrogenated radicals and anions of Watson-Crick adenine-thymine (A-T) base pair have been investigated by the B3LYP/DZP++ approach. Calculations show that the dehydrogenated radicals and anions have relatively high stabilities compared with the single base adenine and thymine. The electron attachment to the A-T base pair and its derivatives significantly modifies the hydrogen bond interactions and results in remarkable structural changes. As for the dehydrogenated A-T radicals, they have relatively high electron affinities and different dehydrogenation properties with respect to their constituent elements. The relatively low-cost hydrogen eliminations correspond to the (N9)-H (adenine) and (NI)-H (thymine) bonds cleavage. Both dehydrogenation processes have Gibbs free energies of reaction ΔG° of 13.4 and 17.2 kcal mol-1, respectively. The solvent water exhibits significant effect on electron attachment and dehydrogenation properties of the A-T base pair and its derivatives. In the dehydrogenating process, the anionic A-T fragment gradually changes its electronic configuration from π* to σ* state, like the single bases adenine and thymine.
| Original language | English |
|---|---|
| Pages (from-to) | 4384-4390 |
| Number of pages | 7 |
| Journal | Journal of Physical Chemistry A |
| Volume | 111 |
| Issue number | 20 |
| DOIs | |
| State | Published - 24 May 2007 |
| Externally published | Yes |