Best Robert B, Buchete Nicolae-Viorel, Hummer Gerhard
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892-0520, USA.
Biophys J. 2008 Jul;95(1):L07-9. doi: 10.1529/biophysj.108.132696. Epub 2008 May 2.
Accurate force fields are essential for the success of molecular dynamics simulations. In apparent contrast to the conformational preferences of most force fields, recent NMR experiments suggest that short polyalanine peptides in water populate the polyproline II structure almost exclusively. To investigate this apparent contradiction, with its ramifications for the assessment of molecular force fields and the structure of unfolded proteins, we performed extensive simulations of Ala(5) in water ( approximately 5 micros total time), using twelve different force fields and three different peptide terminal groups. Using either empirical or density-functional-based Karplus relations for the J-couplings, we find that most current force fields do overpopulate the alpha-region, with quantitative results depending on the choice of Karplus relation and on the peptide termini. Even after reweighting to match experiment, we find that Ala(5) retains significant alpha- and beta-populations. In fact, several force fields match the experimental data well before reweighting and have a significant helical population. We conclude that radical changes to the best current force fields are not necessary, based on the NMR data. Nevertheless, experiments on short peptides open the way toward the systematic improvement of current simulation models.
精确的力场对于分子动力学模拟的成功至关重要。与大多数力场的构象偏好明显不同的是,最近的核磁共振实验表明,水中的短聚丙氨酸肽几乎只呈现多聚脯氨酸II结构。为了研究这一明显的矛盾及其对分子力场评估和未折叠蛋白质结构的影响,我们使用12种不同的力场和3种不同的肽端基对水中的Ala(5)进行了广泛的模拟(总时间约5微秒)。使用基于经验或密度泛函的Karplus关系来计算J耦合,我们发现大多数当前的力场确实过度填充了α区域,定量结果取决于Karplus关系的选择和肽端基。即使在重新加权以匹配实验之后,我们发现Ala(5)仍保留显著的α和β构象比例。事实上,一些力场在重新加权之前就能很好地匹配实验数据,并且具有显著的螺旋构象比例。基于核磁共振数据,我们得出结论,目前无需对最佳力场进行彻底改变。尽管如此,对短肽的实验为当前模拟模型的系统改进开辟了道路。