Zagrovic Bojan, Gattin Zrinka, Lau Justin Kai-Chi, Huber Matthias, van Gunsteren Wilfred F
Laboratory of Physical Chemistry, Swiss Federal Institute of Technology, 8093, Zürich, Switzerland.
Eur Biophys J. 2008 Jul;37(6):903-12. doi: 10.1007/s00249-008-0307-y. Epub 2008 Mar 27.
We have studied two different beta-peptides in methanol using explicit solvent molecular dynamics simulations and the GROMOS 53A6 force field: a heptapeptide (peptide 1) expected to form a left-handed 3(14)-helix, and a hexapeptide (peptide 2) expected to form a beta-hairpin in solution. Our analysis has focused on identifying and analyzing the stability of the dominant secondary structure conformations adopted by the peptides, as well as on comparing the experimental NOE distance upper bounds and 3J-coupling values with their counterparts calculated on the basis of the simulated ensembles. Moreover, we have critically compared the present results with the analogous results obtained with the GROMOS 45A3 (peptide 1) and 43A1 (peptide 2) force fields. We conclude that within the limits of conformational sampling employed here, the GROMOS 53A6 force field satisfactorily reproduces experimental findings regarding the behavior of short beta-peptides, with accuracy that is comparable to but not exceeding that of the previous versions of the force field. GCE legend Conformational clustering analysis of the simulated ensemble of a ss-hexapeptide with two different simulation setups (a and b). The central members of all of the clusters populating more than 5% of all of the structures are shown, together with the most dominant hydrogen bonds and the corresponding percentages of cluster members containing them.
我们使用显式溶剂分子动力学模拟和GROMOS 53A6力场,在甲醇中研究了两种不同的β-肽:一种七肽(肽1)预期形成左手3(14)-螺旋,另一种六肽(肽2)预期在溶液中形成β-发夹结构。我们的分析重点在于识别和分析肽所采用的主要二级结构构象的稳定性,以及将实验得到的NOE距离上限和3J-耦合值与基于模拟系综计算得到的对应值进行比较。此外,我们还严格地将当前结果与使用GROMOS 45A3(肽1)和43A1(肽2)力场获得的类似结果进行了比较。我们得出结论,在此处采用的构象采样范围内,GROMOS 53A6力场能够令人满意地重现关于短β-肽行为的实验结果,其准确性与之前版本的力场相当,但不超过它们。GCE图例:具有两种不同模拟设置(a和b)的单链六肽模拟系综的构象聚类分析。展示了所有占据所有结构5%以上的簇的核心成员,以及最主要的氢键和包含这些氢键的簇成员的相应百分比。