Electron Attachment to Hydrated Oligonucleotide Dimers: Guanylyl-3′,5′-Cytidine and Cytidylyl-3′,5′-Guanosine

被引:11
作者
Gu, Jiande [1 ]
Xie, Yaoming [2 ]
Schaefer, Henry F., III [2 ]
机构
[1] Chinese Acad Sci, Drug Design & Discovery Ctr, Shanghai Inst Mat Med, State Key Lab Drug Res,Shanghai Inst Biol Sci, Shanghai 201203, Peoples R China
[2] Univ Georgia, Ctr Computat Quantum Chem, Athens, GA 30602 USA
基金
美国国家科学基金会;
关键词
density functional calculations; DNA; electron affinity; oligonucleotides; radical ions; DENSITY-FUNCTIONAL THEORY; GLYCOSIDIC BOND-CLEAVAGE; LOW-ENERGY ELECTRONS; DNA STRAND BREAKS; THYMINE BASE-PAIR; AB-INITIO; IONIZATION-POTENTIALS; CHARGE-TRANSPORT; EXCESS ELECTRON; PROTON-TRANSFER;
D O I
10.1002/chem.200902977
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The dinucleoside phosphate deoxycytidylyl-3',5'-deoxyguanosine (dCpdG) and deoxyguanylyl-3',5'-deoxycytidine (dGpdC) systems are among the largest to be studied by reliable theoretical methods. Exploring electron attachment to these subunits of DNA single strands provides significant progress toward definitive predictions of the electron affinities of DNA single strands. The adiabatic electron affinities of the oligonucleotides are found to be sequence dependent. Deoxycytidine (dC) on the 5' end, dCpdG, has larger adiabatic electron affinity (AEA, 0.90 eV) than dC on the 3' end of the oligomer (dGpdC, 0.66 eV). The geometric features, molecular orbital analyses, and charge distribution studies for the radical anions of the cytidine-containing oligonucleotides demonstrate that the excess electron in these anionic systems is dominantly located on the cytosine nucleobase moiety. The sr-stacking interaction between nucleobases G and C seems unlikely to improve the electron-capturing ability of the oligonucleotide dimers. The influence of the neighbor- ing base on the electron-capturing ability of cytosine should be attributed to the intensified proton accepting donating interaction between the bases. The present investigation demonstrates that the vertical detachment energies (VDEs) of the radical anions of the oligonucleotides dGpdC and dCpdG are significantly larger than those of the corresponding nucleotides. Consequently, reactions with low activation barriers, such as those for O-C sigma bond and N-glycosidic bond breakage, might be expected for the radical anions of the guanosine cytosine mixed oligonucleotides.
引用
收藏
页码:5089 / 5096
页数:8
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