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Peptide crystal simulations reveal hidden dynamics

机译:肽晶体模拟揭示隐藏的动力学

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摘要

Molecular dynamics simulations of biomolecular crystals at atomic resolution have the potential to recover information on dynamics and heterogeneity hidden in the X-ray diffraction data. We present here 9.6 microseconds of dynamics in a small helical peptide crystal with 36 independent copies of the unit cell. The average simulation structure agrees with experiment to within 0.28 Å backbone and 0.42 Å all-atom rmsd; a model refined against the average simulation density agrees with the experimental structure to within 0.20 Å backbone and 0.33 Å all-atom rmsd. The R-factor between the experimental structure factors and those derived from this unrestrained simulation is 23% to 1.0 Å resolution. The B-factors for most heavy atoms agree well with experiment (Pearson correlation of 0.90), but B-factors obtained by refinement against the average simulation density underestimate the coordinate fluctuations in the underlying simulation where the simulation samples alternate conformations. A dynamic flow of water molecules through channels within the crystal lattice is observed, yet the average water density is in remarkable agreement with experiment. A minor population of unit cells is characterized by reduced water content, 310 helical propensity and a gauche(−) side-chain rotamer for one of the valine residues. Careful examination of the experimental data suggests that transitions of the helices are a simulation artifact, although there is indeed evidence for alternate valine conformers and variable water content. This study highlights the potential for crystal simulations to detect dynamics and heterogeneity in experimental diffraction data, as well as to validate computational chemistry methods.
机译:生物分子晶体在原子分辨率下的分子动力学模拟具有恢复隐藏在X射线衍射数据中的动力学和异质性信息的潜力。在此,我们在一个具有36个独立拷贝的晶胞的小螺旋状肽晶体中呈现9.6微秒的动力学。平均模拟结构与实验吻合在0.28Å主链和0.42Å全原子均方根值内;针对平均模拟密度精炼的模型与实验结构相符,骨架在0.20Å以内,全原子均方根值在0.33Å以内。实验结构因子与从该不受限制的模拟中得出的因子之间的R因子为23%至1.0Å的分辨率。对于大多数重原子,B因子与实验吻合良好(皮尔森相关系数为0.90),但是通过对平均模拟密度进行细化获得的B因子低估了模拟样品交替构象的基础模拟中的坐标波动。观察到水分子动态流过晶格内的通道,但是平均水密度与实验显着一致。少量单位细胞的特征在于水含量降低,310螺旋倾向和缬氨酸残基之一的gauche(-)侧链旋转异构体。仔细检查实验数据表明,螺旋的转变是一个模拟假象,尽管确实有替代缬氨酸构象物和可变水含量的证据。这项研究强调了晶体模拟在检测实验衍射数据中的动力学和非均质性以及验证计算化学方法方面的潜力。

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