Orlando Thomas M, Oh Doogie, Chen Yanfeng, Aleksandrov Alexandr B
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
J Chem Phys. 2008 May 21;128(19):195102. doi: 10.1063/1.2907722.
Elastic scattering of 5-30 eV electrons within the B-DNA 5'-CCGGCGCCGG-3' and A-DNA 5'-CGCGAATTCGCG-3' DNA sequences is calculated using the separable representation of a free-space electron propagator and a curved wave multiple scattering formalism. The disorder brought about by the surrounding water and helical base stacking leads to a featureless amplitude buildup of elastically scattered electrons on the sugar and phosphate groups for all energies between 5 and 30 eV. However, some constructive interference features arising from diffraction are revealed when examining the structural waters within the major groove. These appear at 5-10, 12-18, and 22-28 eV for the B-DNA target and at 7-11, 12-18, and 18-25 eV for the A-DNA target. Although the diffraction depends on the base-pair sequence, the energy dependent elastic scattering features are primarily associated with the structural water molecules localized within 8-10 A spheres surrounding the bases and/or the sugar-phosphate backbone. The electron density buildup occurs in energy regimes associated with dissociative electron attachment resonances, direct electronic excitation, and dissociative ionization. Since diffraction intensity can be localized on structural water, compound H2O:DNA states may contribute to energy dependent low-energy electron induced single and double strand breaks.
利用自由空间电子传播子的可分离表示和弯曲波多重散射形式,计算了5-30 eV电子在B-DNA 5'-CCGGCGCCGG-3'和A-DNA 5'-CGCGAATTCGCG-3' DNA序列中的弹性散射。周围水和螺旋碱基堆积引起的无序导致在5至30 eV的所有能量下,弹性散射电子在糖基和磷酸基团上的振幅无特征性增强。然而,在检查大沟内的结构水时,发现了一些由衍射产生的相长干涉特征。对于B-DNA靶标,这些特征出现在5-10、12-18和22-28 eV;对于A-DNA靶标,出现在7-11、12-18和18-25 eV。虽然衍射取决于碱基对序列,但能量相关的弹性散射特征主要与位于围绕碱基和/或糖-磷酸主链的8-10 Å球体内的结构水分子有关。电子密度增强发生在与解离电子附着共振、直接电子激发和解离电离相关的能量区域。由于衍射强度可以定位在结构水上,化合物H2O:DNA态可能有助于能量相关的低能电子诱导的单链和双链断裂。