Modelling of carbohydrate–aromatic interactions: ab initio energetics and force field performance

被引:0
|
作者
Vojtěch Spiwok
Petra Lipovová
Tereza Skálová
Eva Vondráčková
Jan Dohnálek
Jindřich Hašek
Blanka Králová
机构
[1] Institute of Chemical Technology in Prague,Department of Biochemistry
[2] Academy of Sciences of the Czech Republic,Institute of Macromolecular Chemistry
来源
Journal of Computer-Aided Molecular Design | 2005年 / 19卷
关键词
carbohydrate recognition; C–H/π interactions; force field; glycobiology; glycosidases; lectins;
D O I
暂无
中图分类号
学科分类号
摘要
Aromatic amino acid residues are often present in carbohydrate-binding sites of proteins. These binding sites are characterized by a placement of a carbohydrate moiety in a stacking orientation to an aromatic ring. This arrangement is an example of CH/π interactions. Ab initio interaction energies for 20 carbohydrate–aromatic complexes taken from 6 selected ultra-high resolution X-ray structures of glycosidases and carbohydrate-binding proteins were calculated. All interaction energies of a pyranose moiety with a side chain of an aromatic residue were calculated as attractive with interaction energy ranging from −2.8 to −12.3 kcal/mol as calculated at the MP2/6-311+G(d) level. Strong attractive interactions were observed for a wide range of orientations of carbohydrate and aromatic ring as present in selected X-ray structures. The most attractive interaction was associated with apparent combination of CH/π interactions and classical H-bonds. The failure of Hartree–Fock method (interaction energies from +1.0 to −6.9 kcal/mol) can be explained by a dispersion nature of a majority of the studied complexes. We also present a comparison of interaction energies calculated at the MP2 level with those calculated using molecular mechanics force fields (OPLS, GROMOS, CSFF/CHARMM, CHEAT/CHARMM, Glycam/AMBER, MM2 and MM3). For a majority of force fields there was a strong correlation with MP2 values. RMSD between MP2 and force field values were 1.0 for CSFF/CHARMM, 1.2 for Glycam/AMBER, 1.2 for GROMOS, 1.3 for MM3, 1.4 for MM2, 1.5 for OPLS and to 2.3 for CHEAT/CHARMM (in kcal/mol). These results show that molecular mechanics approximates interaction energies very well and support an application of molecular mechanics methods in the area of glycochemistry and glycobiology.
引用
收藏
页码:887 / 901
页数:14
相关论文
共 50 条
  • [1] Modelling of carbohydrate-aromatic interactions:: ab initio energetics and force field performance
    Spiwok, Vojtech
    Lipovová, Petra
    Skálová, Tereza
    Vondrácková, Eva
    Dohnálek, Jan
    Hasek, Jindrich
    Králová, Blanka
    JOURNAL OF COMPUTER-AIDED MOLECULAR DESIGN, 2005, 19 (12) : 887 - 901
  • [2] Modeling induction phenomena in intermolecular interactions with an Ab initio force field
    Dehez, Francois
    Angyan, Janos G.
    Gutierrez, Ignacio Soteras
    Luque, F. Javier
    Schulten, Klaus
    Chipot, Christophe
    JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2007, 3 (06) : 1914 - 1926
  • [3] Ab initio computations for the modelling of aromatic polymers
    Jaffe, R.L.
    Komornicki, A.
    Scheinder, A.C.
    McLean, A.D.
    Matsuda, T.
    Yoon, D.Y.
    Polymer Preprints, Division of Polymer Chemistry, American Chemical Society, 1992, 33 (01):
  • [4] Magnitude and Nature of Carbohydrate-Aromatic Interactions: Ab Initio Calculations of Fucose-Benzene Complex
    Tsuzuki, Seiji
    Uchimaru, Tadafumi
    Mikami, Masuhiro
    JOURNAL OF PHYSICAL CHEMISTRY B, 2009, 113 (16): : 5617 - 5621
  • [5] Validation of the applicability of force fields to reproduce ab initio noncovalent interactions involving aromatic groups
    Duan, GL
    Smith, VH
    Weaver, DF
    ADVANCES IN QUANTUM CHEMISTRY, VOL 47, 2004, 47 : 65 - 92
  • [6] Modelling of interactions between volatile anaesthetics (halothane, enflurane) and aromatic compounds, ab initio study
    Zierkiewicz, Wiktor
    CHEMICAL PHYSICS, 2010, 373 (03) : 243 - 250
  • [7] Ab initio generalized valence force field for zeolite modelling .2. Aluminosilicates
    Ermoshin, VA
    Smirnov, KS
    Bougeard, D
    CHEMICAL PHYSICS, 1996, 209 (01) : 41 - 51
  • [8] Anisotropic nonadditive ab initio force field for noncovalent interactions of H2
    Donchev, A. G.
    Galkin, N. G.
    Tarasov, V. I.
    JOURNAL OF CHEMICAL PHYSICS, 2007, 126 (17):
  • [9] On the transferability of force field parameters - With an ab initio force field developed for sulfonamides
    Sato, F
    Hojo, S
    Sun, H
    JOURNAL OF PHYSICAL CHEMISTRY A, 2003, 107 (02): : 248 - 257
  • [10] Ab initio parameterized valence force field for the structure and energetics of amorphous SiOx (0 ≤ x ≤ 2) materials
    Lee, Sangheon
    Bondi, Robert J.
    Hwang, Gyeong S.
    PHYSICAL REVIEW B, 2011, 84 (04)