Department of Chemistry and Biochemistry, and National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida, USA.
Biophys J. 2011 Aug 17;101(4):910-5. doi: 10.1016/j.bpj.2011.06.053.
The development of the most recent generation of molecular mechanics force fields promises an increasingly predictive understanding of the protein dynamics-function relationship. Based on extensive validation against various types of experimental data, the AMBER force field ff99SB was benchmarked in recent years as a favorable force field for protein simulations. Recent improvements of the side chain and backbone potentials, made by different groups, led to the ff99SB-ILDN and ff99SBnmr1 force fields, respectively. The combination of these potentials into a unified force field, termed ff99SBnmr1-ILDN, was used in this study to perform a microsecond time scale molecular dynamics simulation of free ubiquitin in explicit solvent for validation against an extensive set of experimental NMR methyl group residual dipolar couplings. Our results show a high level of consistency between the experimental data and the values predicted from the molecular dynamics trajectory reflecting a systematically improved performance of ff99SBnmr1-ILDN over the original ff99SB force field. Moreover, the unconstrained ff99SBnmr1-ILDN MD ensemble achieves a similar level of agreement as the recently introduced EROS ensemble, which was constructed based on a large body of NMR data as constraints, including the methyl residual dipolar couplings. This suggests that ff99SBnmr1-ILDN provides a high-quality representation of the motions of methyl-bearing protein side chains, which are sensitive probes of protein-protein and protein-ligand interactions.
最新一代的分子力学力场的发展有望越来越深入地了解蛋白质动力学与功能之间的关系。基于对各种类型的实验数据的广泛验证,AMBER 力场 ff99SB 近年来被基准测试为蛋白质模拟的有利力场。最近,不同小组对侧链和主链势的改进导致了 ff99SB-ILDN 和 ff99SBnmr1 力场的产生。这些势被组合成一个统一的力场,称为 ff99SBnmr1-ILDN,用于在本研究中对游离泛素在明溶剂中的微秒时间尺度分子动力学模拟进行验证,以与广泛的实验 NMR 甲基残基偶极耦合数据集进行比较。我们的结果表明,实验数据与分子动力学轨迹预测值之间具有高度一致性,这反映了 ff99SBnmr1-ILDN 相对于原始 ff99SB 力场的性能得到了系统的改进。此外,无约束的 ff99SBnmr1-ILDN MD 整体达到了与最近引入的 EROS 整体相似的一致性水平,后者是基于大量的 NMR 数据作为约束条件构建的,包括甲基残基偶极耦合。这表明 ff99SBnmr1-ILDN 提供了对含甲基的蛋白质侧链运动的高质量表示,这些侧链是蛋白质-蛋白质和蛋白质-配体相互作用的敏感探针。