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首页> 外文期刊>The Journal of Chemical Physics >Investigation of polarization effects in the gramicidin A channel from ab initio molecular dynamics simulations
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Investigation of polarization effects in the gramicidin A channel from ab initio molecular dynamics simulations

机译:从头算分子动力学模拟研究短杆菌肽A通道中的极化效应

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Polarization is an important component of molecular interactions and is expected to play a particularly significant role in inhomogeneous environments such as pores and interfaces. Here we investigate the effects of polarization in the gramicidin A ion channel by performing quantum mechanics/molecular mechanics molecular dynamics (MD) simulations and comparing the results with those obtained from classical MD simulations with non-polarizable force fields. We consider the dipole moments of backbone carbonyl groups and channel water molecules as well as a number of structural quantities of interest. The ab initio results show that the dipole moments of the carbonyl groups and water molecules are highly sensitive to the hydrogen bonds (H-bonds) they participate in. In the absence of a K+ ion, water molecules in the channel are quite mobile, making the H-bond network highly dynamic. A central K+ ion acts as an anchor for the channel waters, stabilizing the H-bond network and thereby increasing their average dipole moments. In contrast, the K+ ion has little effect on the dipole moments of the neighboring carbonyl groups. The weakness of the ion-peptide interactions helps to explain the near diffusion-rate conductance of K+ ions through the channel. We also address the sampling issue in relatively short ab initio MD simulations. Results obtained from a continuous 20 ps ab initio MD simulation are compared with those generated by sampling ten windows from a much longer classical MD simulation and running each window for 2 ps with ab initio MD. Both methods yield similar results for a number of quantities of interest, indicating that fluctuations are fast enough to justify the short ab initio MD simulations.
机译:极化是分子相互作用的重要组成部分,有望在非均匀环境(例如孔和界面)中发挥特别重要的作用。在这里,我们通过执行量子力学/分子力学分子动力学(MD)模拟,并将结果与​​经典的具有不可极化力场的MD模拟所获得的结果进行比较,从而研究了短杆菌肽A离子通道中的极化效应。我们考虑了骨架羰基和通道水分子的偶极矩以及许多结构量。从头算结果表明,羰基和水分子的偶极矩对它们参与的氢键(H键)高度敏感。在没有K +离子的情况下,通道中的水分子非常易移动, H键网络高度动态。中央的K +离子充当通道水的锚,稳定H键网络,从而增加其平均偶极矩。相反,K +离子对相邻羰基的偶极矩影响很小。离子-肽相互作用的弱点有助于解释K +离子通过通道的接近扩散速率电导。我们还在相对较短的从头开始MD仿真中解决了采样问题。从连续20 ps从头开始的MD模拟获得的结果与通过从更长的经典MD模拟中采样十个窗口并以从头开始的MD运行每个窗口2 ps所生成的结果进行比较。两种方法对于许多感兴趣的量都产生相似的结果,表明波动足够快,足以证明简短的从头算MD模拟是正确的。

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