Density functional theory and biomolecules: A study of glycine, alanine, and their oligopeptides

被引:113
作者
Kaschner, R [1 ]
Hohl, D [1 ]
机构
[1] Forschungszentrum Julich, Inst Festkorperforsch, D-52425 Julich, Germany
关键词
D O I
10.1021/jp980975u
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We present density functional (DF) calculations, using a pseudopotential scheme and plane waves as basis functions, for isolated molecules of the amino acids glycine and alanine, for small oligopeptides composed of glycine and alanine, and for periodic (infinite) polyalanine helices. We calculate relative energies and geometries for the low-lying isomers of glycine and alanine and for a variety of oligopeptide geometries using various DF formulations for electron exchange and correlation (LDA, PBE, BLYP, BP). Comparison is made with other theories and experiment where possible. The free molecule equilibrium geometries agree well with the limited experimental data and with post-Hartree-Fock (post-HF) calculations. The inclusion of gradient-corrected (nonlocal) functionals is essential when hydrogen bonds play a role in determining relative energies. This is especially true for hydrogen bonds of the type N ... H-O, which appear in two isomers of glycine and alanine. We obtain the most reliable results with BLYP, but the best compromise, with a considerably smaller cutoff energy, is PBE. For the polypeptides we find that the peptide bonds in the equilibrium,geometries are planar to high accuracy, with dihedral angles deviating from planarity by up to 15 degrees. The relative energies of the low-lying isomers of alanine dipeptide agree very well with post-HF calculations. The equilibrium structure of the polyalanine a helix is very well reproduced by our calculations.
引用
收藏
页码:5111 / 5116
页数:6
相关论文
共 47 条
[21]   H2O hydrogen bonding in density-functional theory [J].
Hamann, DR .
PHYSICAL REVIEW B, 1997, 55 (16) :10157-10160
[22]  
HEADGORDON T, 1989, INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY QUANTUM BIOLOGY SYMPOSIUM, NO 16, P311
[23]   THEORETICAL-STUDY OF BLOCKED GLYCINE AND ALANINE PEPTIDE ANALOGS [J].
HEADGORDON, T ;
HEADGORDON, M ;
FRISCH, MJ ;
BROOKS, CL ;
POPLE, JA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1991, 113 (16) :5989-5997
[24]  
HOHL D, 1995, THEOR CHIM ACTA, V91, P237
[25]   GLYCINE CONFORMATIONAL-ANALYSIS [J].
HU, CH ;
SHEN, MZ ;
SCHAEFER, HF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (07) :2923-2929
[26]  
Hutter J., 1994, Computational Materials Science, V2, P244, DOI 10.1016/0927-0256(94)90105-8
[27]  
HUTTER J, 1997, CPMD VERSION 3 0
[28]   MAIN CONFORMER OF GASEOUS GLYCINE - MOLECULAR-STRUCTURE AND ROTATIONAL BARRIER FROM ELECTRON-DIFFRACTION DATA AND ROTATIONAL-CONSTANTS [J].
IIJIMA, K ;
TANAKA, K ;
ONUMA, S .
JOURNAL OF MOLECULAR STRUCTURE, 1991, 246 (3-4) :257-266
[29]   N-acetyl-L-alanine N'-methylamide: A density functional analysis of the vibrational absorption and vibrational circular dichroism spectra [J].
Jalkanen, KJ ;
Suhai, S .
CHEMICAL PHYSICS, 1996, 208 (01) :81-116
[30]   THE DENSITY FUNCTIONAL FORMALISM, ITS APPLICATIONS AND PROSPECTS [J].
JONES, RO ;
GUNNARSSON, O .
REVIEWS OF MODERN PHYSICS, 1989, 61 (03) :689-746