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ff14SB: Improving the Accuracy of Protein Side Chain and Backbone Parameters from ff99SB

机译:ff14SB:提高ff99SB的蛋白质侧链和骨干参数的准确性

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Molecular mechanics is powerful for its speed in atomistic simulations, but an accurate force field is required. The Amber ff99SB force field improved protein secondary structure balance and dynamics from earlier force fields like ff99, but weaknesses in side chain rotamer and backbone secondary structure preferences have been identified. Here, we performed a complete refit of all amino acid side chain dihedral parameters, which had been carried over from ff94. The training set of conformations included multidimensional dihedral scans designed to improve transferability of the parameters. Improvement in all amino acids was obtained as compared to ff99SB. Parameters wer also generated for alternate protonation states of ionizable side chains. Average errors in relative energies of pairs of conformations were under 1.0 kcal/mol as compared to QM, reduced 35% from ff99SB. We also took the opportunity to make empirical adjustments to the protein backbone dihedral parameters as compared to ff99SB. Multiple small adjustments of phi and psi parameters were tested against NMR scalar coupling data and secondary structure content for short peptides. The best results were obtained from a physically motivated adjustment to the phi rotational profile that compensates for lack of ff99SB QM training data in the beta-ppII transition region. Together, these backbone and side chain modifications (hereafter called ff14SB) not only better reproduced their benchmarks, but also improved secondary structure content in small peptides and reproduction of NMR chi 1 scalar coupling measurements for proteins in solution. We also discuss the Amber ff12SB parameter set, a preliminary version of ff14SB that includes most of its improvements.
机译:分子力学在原子模拟中的速度非常强大,但是需要精确的力场。琥珀色ff99SB力场改善了较早的力场(例如ff99)的蛋白质二级结构平衡和动力学,但已发现侧链旋转异构体和骨架二级结构偏好方面的弱点。在这里,我们对所有氨基酸侧链二面体参数进行了完整的改编,这些参数已从ff94保留下来。构象训练集包括多维二面体扫描,旨在提高参数的可传递性。与ff99SB相比,所有氨基酸得到改善。还为可电离侧链的替代质子化状态生成了参数。与QM相比,构象对相对能量的平均误差低于1.0 kcal / mol,与ff99SB相比降低了35%。与ff99SB相比,我们还借此机会对蛋白质主链二面体参数进行了经验调整。针对NMR标量耦合数据和短肽的二级结构含量,测试了phi和psi参数的多个小调整。最好的结果是通过对phi旋转轮廓进行的物理调节而获得的,该补偿可弥补beta-ppII过渡区域中缺乏ff99SB QM训练数据。这些主链和侧链修饰(以下称为ff14SB)在一起,不仅可以更好地再现其基准,而且还可以改善小肽中的二级结构含量,并可以再现溶液中蛋白质的NMR chi 1标量耦合测量结果。我们还将讨论琥珀色ff12SB参数集,它是ff14SB的初步版本,其中包括其大部分改进。

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