MOLECULAR-DYNAMICS SIMULATIONS OF HELIX DENATURATION

被引:215
作者
DAGGETT, V
LEVITT, M
机构
[1] Department of Cell Biology Beckman Labs. for Structural Biology Stanford Univ. School of Medicine, Stanford
关键词
HELIX COIL TRANSITIONS; MOLECULAR DYNAMICS; PROTEIN FOLDING; HELIX SOLVATION; SECONDARY STRUCTURE FLUCTUATIONS;
D O I
10.1016/0022-2836(92)90264-K
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
An understanding of the structural transitions that an α-helix undergoes will help to elucidate such motions in proteins and their role in protein folding. We present the results of molecular dynamics simulations to investigate these transitions in a short polyalanine peptide (13 residues) both in vacuo and in the presence of solvent. The denaturation of this peptide was monitored as a function of temperature (ranging from 5 to 200 °C). In vacuo, the helical state predominated at all temperatures, whereas in solution the helix melted with increasing temperature. The peptide was predominantly helical at low temperature in solution, while at intermediate temperatures the peptide spent the bulk of the time fluctuating between different conformations with intermediate amounts of helix, e.g. not completely helical nor entirely non-helical. Many of these conformations consisted of short helical segments with intervening non-helical residues. At high temperature the peptide unfolded and adopted various collapsed unstructured states. The intrahelical hydrogen bonds that break at high temperature were not fully compensated by hydrogen bonds with water molecules in the partially unfolded forms of the peptide. Increases in temperature disrupted both the helical structure and the peptide-water interactions. Water played a major but indirect role in facilitating unfolding, as opposed to specifically competing for the intrapeptide hydrogen bonds. The implications of our results to protein folding are discussed. © 1992.
引用
收藏
页码:1121 / 1138
页数:18
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