Stability of the I-motif structure is related to the interactions between phosphodiester backbones

被引:35
作者
Malliavin, TE [1 ]
Gau, J [1 ]
Snoussi, K [1 ]
Leroy, JL [1 ]
机构
[1] Inst Biol Physicochim, CNRS, Lab Biochim Theor, Paris, France
关键词
D O I
10.1016/S0006-3495(03)75111-X
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The i-motif DNA tetrameric structure is formed of two parallel duplexes intercalated in a head-to-tail orientation, and held together by hemiprotonated cytosine pairs. The four phosphodiester backbones forming the structure define two narrow and wide grooves. The short interphosphate distances across the narrow groove induce a strong repulsion which should destabilize the tetramer. To investigate this point, molecular dynamics simulations were run on the [d(C2)]4 and [d(C4)]4 tetramers in 3'E and 5'E topologies, for which the interaction of the phosphodiester backbones through the narrow groove is different. The analysis of the simulations, using the Molecular Mechanics Generalized Born Solvation Area and Molecular Mechanics Poisson-Boltzmann Solvation Area approaches, shows that it is the van der Waals energy contribution which displays the largest relative difference between the two topologies. The comparison of the solvent-accessible area of each topology reveals that the sugar-sugar interactions account for the greater stability of the 3'E topology. This stresses the importance of the sugar-sugar contacts across the narrow groove which, enforcing the optimal backbone twisting, are essential to the base stacking and the i-motif stability. Tighter interactions between the sugars are observed in the case of N-type sugar puckers.
引用
收藏
页码:3838 / 3847
页数:10
相关论文
共 47 条
[1]   HUMAN TELOMERIC C-STRAND TETRAPLEXES [J].
AHMED, S ;
KINTANAR, A ;
HENDERSON, E .
NATURE STRUCTURAL BIOLOGY, 1994, 1 (02) :83-88
[2]   CONFORMATIONAL-ANALYSIS OF SUGAR RING IN NUCLEOSIDES AND NUCLEOTIDES - NEW DESCRIPTION USING CONCEPT OF PSEUDOROTATION [J].
ALTONA, C ;
SUNDARALINGAM, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1972, 94 (23) :8205-+
[3]   Functional and dysfunctional roles of quadruplex DNA in cells [J].
Arthanari, H ;
Bolton, PH .
CHEMISTRY & BIOLOGY, 2001, 8 (03) :221-230
[4]   Generalized born models of macromolecular solvation effects [J].
Bashford, D ;
Case, DA .
ANNUAL REVIEW OF PHYSICAL CHEMISTRY, 2000, 51 :129-152
[5]   Inter-strand C-H center dot center dot center dot O hydrogen bonds stabilizing four-stranded intercalated molecules: Stereoelectronic effects of 04' in cytosine-rich DNA [J].
Berger, I ;
Egli, M ;
Rich, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (22) :12116-12121
[6]  
Case DA, 1999, AMBER 6
[7]   A modified version of the Cornell et al. force field with improved sugar pucker phases and helical repeat [J].
Cheatham, TE ;
Cieplak, P ;
Kollman, PA .
JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 1999, 16 (04) :845-862
[8]  
Cheatham TE, 1996, J MOL BIOL, V259, P434
[9]   A molecular level picture of the stabilization of A-DNA in mixed ethanol-water solutions [J].
Cheatham, TE ;
Crowley, MF ;
Fox, T ;
Kollman, PA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (18) :9626-9630
[10]   CRYSTAL-STRUCTURE OF A 4-STRANDED INTERCALATED DNA - D(C-4) [J].
CHEN, LQ ;
CAI, L ;
ZHANG, XH ;
RICH, A .
BIOCHEMISTRY, 1994, 33 (46) :13540-13546