Nerenberg Paul S, Head-Gordon Teresa
California Institute of Quantitative Biosciences (QB3), ‡Department of Bioengineering, University of California, Berkeley , Berkeley, California 94720-3220, United States.
J Chem Theory Comput. 2011 Apr 12;7(4):1220-30. doi: 10.1021/ct2000183. Epub 2011 Mar 7.
While most force field efforts in biomolecular simulation have focused on the parametrization of the protein, relatively little attention has been paid to the quality of the accompanying solvent model. These considerations are especially relevant for simulations of intrinsically disordered peptides and proteins, for which energy differences between conformations are small and interactions with water are enhanced. In this work, we investigate the accuracy of the AMBER ff99SB force field when combined with the standard TIP3P model or the more recent TIP4P-Ew water model, to generate conformational ensembles for disordered trialanine (Ala3), triglycine (Gly3), and trivaline (Val3) peptides. We find that the TIP4P-Ew water model yields significantly better agreement with experimentally measured scalar couplings-and therefore more accurate conformational ensembles-for both Ala3 and Gly3. For Val3, however, we find that the TIP3P and TIP4P-Ew ensembles are equivalent in their performance. To further improve the protein-water force field combination and obtain more accurate intrinsic conformational preferences, we derive a straightforward perturbation to the ϕ' backbone dihedral potential that shifts the β-PPII equilibrium. We find that the revised ϕ' backbone dihedral potential yields improved conformational ensembles for a variety of small peptides and maintains the stability of the globular ubiquitin protein in TIP4P-Ew water.
虽然生物分子模拟中的大多数力场研究都集中在蛋白质的参数化上,但对伴随的溶剂模型的质量关注相对较少。这些考虑对于内在无序肽和蛋白质的模拟尤为重要,因为它们构象之间的能量差异很小,并且与水的相互作用增强。在这项工作中,我们研究了AMBER ff99SB力场与标准TIP3P模型或更新的TIP4P-Ew水模型结合时的准确性,以生成无序三丙氨酸(Ala3)、三甘氨酸(Gly3)和三缬氨酸(Val3)肽的构象集合。我们发现,TIP4P-Ew水模型与实验测量的标量耦合产生了显著更好的一致性,因此对于Ala3和Gly3都有更准确的构象集合。然而,对于Val3,我们发现TIP3P和TIP4P-Ew集合的性能相当。为了进一步改进蛋白质-水的力场组合并获得更准确的内在构象偏好,我们对ϕ'主链二面角势能进行了直接扰动,从而改变了β-PPII平衡。我们发现,修订后的ϕ'主链二面角势能为各种小肽产生了改进的构象集合,并在TIP4P-Ew水中维持了球状泛素蛋白的稳定性。