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《少有人走的路》再探:AMBER ff15ipq,基于自洽物理模型构建的原创蛋白质力场

Further along the Road Less Traveled: AMBER ff15ipq, an Original Protein Force Field Built on a Self-Consistent Physical Model.

作者信息

Debiec Karl T, Cerutti David S, Baker Lewis R, Gronenborn Angela M, Case David A, Chong Lillian T

机构信息

Molecular Biophysics and Structural Biology Graduate Program, University of Pittsburgh and Carnegie Mellon University , Pittsburgh, Pennsylvania, United States.

Department of Structural Biology, University of Pittsburgh School of Medicine , Pittsburgh, Pennsylvania 15260, United States.

出版信息

J Chem Theory Comput. 2016 Aug 9;12(8):3926-47. doi: 10.1021/acs.jctc.6b00567. Epub 2016 Jul 22.

Abstract

We present the AMBER ff15ipq force field for proteins, the second-generation force field developed using the Implicitly Polarized Q (IPolQ) scheme for deriving implicitly polarized atomic charges in the presence of explicit solvent. The ff15ipq force field is a complete rederivation including more than 300 unique atomic charges, 900 unique torsion terms, 60 new angle parameters, and new atomic radii for polar hydrogens. The atomic charges were derived in the context of the SPC/Eb water model, which yields more-accurate rotational diffusion of proteins and enables direct calculation of nuclear magnetic resonance (NMR) relaxation parameters from molecular dynamics simulations. The atomic radii improve the accuracy of modeling salt bridge interactions relative to contemporary fixed-charge force fields, rectifying a limitation of ff14ipq that resulted from its use of pair-specific Lennard-Jones radii. In addition, ff15ipq reproduces penta-alanine J-coupling constants exceptionally well, gives reasonable agreement with NMR relaxation rates, and maintains the expected conformational propensities of structured proteins/peptides, as well as disordered peptides-all on the microsecond (μs) time scale, which is a critical regime for drug design applications. These encouraging results demonstrate the power and robustness of our automated methods for deriving new force fields. All parameters described here and the mdgx program used to fit them are included in the AmberTools16 distribution.

摘要

我们展示了用于蛋白质的AMBER ff15ipq力场,这是第二代力场,它使用隐式极化Q(IPolQ)方案开发,用于在存在显式溶剂的情况下推导隐式极化的原子电荷。ff15ipq力场是一次完整的重新推导,包括300多个独特的原子电荷、900个独特的扭转项、60个新的角度参数以及极性氢的新原子半径。原子电荷是在SPC/Eb水模型的背景下推导出来的,该模型能产生更精确的蛋白质旋转扩散,并能从分子动力学模拟中直接计算核磁共振(NMR)弛豫参数。相对于当代的固定电荷力场,原子半径提高了盐桥相互作用建模的准确性,纠正了ff14ipq因使用特定对的 Lennard-Jones 半径而产生的局限性。此外,ff15ipq能非常出色地重现五聚丙氨酸的J耦合常数,与NMR弛豫率合理吻合,并在微秒(μs)时间尺度上保持结构化蛋白质/肽以及无序肽的预期构象倾向,这对于药物设计应用来说是一个关键的时间尺度。这些令人鼓舞的结果证明了我们推导新力场的自动化方法的强大和稳健性。这里描述的所有参数以及用于拟合它们的mdgx程序都包含在AmberTools16发行版中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df3/4980686/bed02b53a90c/ct-2016-005673_0001.jpg

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