Efficiency of the MO method using a Slater-type basis set and non-local density functional formalism for describing DNA base stacking energy

Citation
N. Kurita et al., Efficiency of the MO method using a Slater-type basis set and non-local density functional formalism for describing DNA base stacking energy, CHEM P LETT, 313(3-4), 1999, pp. 693-700
Citations number
30
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
CHEMICAL PHYSICS LETTERS
ISSN journal
00092614 → ACNP
Volume
313
Issue
3-4
Year of publication
1999
Pages
693 - 700
Database
ISI
SICI code
0009-2614(19991112)313:3-4<693:EOTMMU>2.0.ZU;2-X
Abstract
We have developed a molecular-orbital (MO) method based on a Slater-type ba sis set and non-local density functional theory (DFT) for describing the DN A base stacking properties, and its efficiency has been confirmed by invest igating the stacking energy of cytosine dimer. Our DFT method can reproduce the dependence of stacking energy on the stacking conformation obtained by the ab initio second-order Moller-Plesset (MP2) calculation. The stable st ructures of hydrogen bonded Watson-Crick base pairs and (PO4H2)(-1) ion hav e been investigated and the structures obtained by our DFT method are compa rable with those from the MP2 and DFT methods in Gaussian94. Therefore, our DFT method may be applicable for investigating the stable structures of mo re realistic models for stacked DNA base pairs including backbones. (C) 199 9 Elsevier Science B.V. All rights reserved.