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用于膜和膜肽分子动力学模拟的基于衍射的密度约束

Diffraction-based density restraints for membrane and membrane-peptide molecular dynamics simulations.

作者信息

Benz Ryan W, Nanda Hirsh, Castro-Román Francisco, White Stephen H, Tobias Douglas J

机构信息

Department of Chemistry, and Department of Physiology and Biophysics, University of California, Irvine, California, USA.

出版信息

Biophys J. 2006 Nov 15;91(10):3617-29. doi: 10.1529/biophysj.106.084483. Epub 2006 Sep 1.

Abstract

We have recently shown that current molecular dynamics (MD) atomic force fields are not yet able to produce lipid bilayer structures that agree with experimentally-determined structures within experimental errors. Because of the many advantages offered by experimentally validated simulations, we have developed a novel restraint method for membrane MD simulations that uses experimental diffraction data. The restraints, introduced into the MD force field, act upon specified groups of atoms to restrain their mean positions and widths to values determined experimentally. The method was first tested using a simple liquid argon system, and then applied to a neat dioleoylphosphatidylcholine (DOPC) bilayer at 66% relative humidity and to the same bilayer containing the peptide melittin. Application of experiment-based restraints to the transbilayer double-bond and water distributions of neat DOPC bilayers led to distributions that agreed with the experimental values. Based upon the experimental structure, the restraints improved the simulated structure in some regions while introducing larger differences in others, as might be expected from imperfect force fields. For the DOPC-melittin system, the experimental transbilayer distribution of melittin was used as a restraint. The addition of the peptide caused perturbations of the simulated bilayer structure, but which were larger than observed experimentally. The melittin distribution of the simulation could be fit accurately to a Gaussian with parameters close to the observed ones, indicating that the restraints can be used to produce an ensemble of membrane-bound peptide conformations that are consistent with experiments. Such ensembles pave the way for understanding peptide-bilayer interactions at the atomic level.

摘要

我们最近发现,当前的分子动力学(MD)原子力场尚无法生成在实验误差范围内与实验测定结构相符的脂质双层结构。鉴于实验验证模拟具有诸多优势,我们开发了一种用于膜MD模拟的新型约束方法,该方法使用实验衍射数据。引入到MD力场中的这些约束作用于特定的原子组,将它们的平均位置和宽度约束为实验确定的值。该方法首先在一个简单的液态氩系统中进行测试,然后应用于相对湿度为66%的纯二油酰磷脂酰胆碱(DOPC)双层以及含有蜂毒肽的同一双层。将基于实验的约束应用于纯DOPC双层的跨膜双键和水分布,得到了与实验值相符的分布。基于实验结构,这些约束在某些区域改善了模拟结构,而在其他区域引入了更大的差异,这从不完善的力场中是可以预期的。对于DOPC - 蜂毒肽系统,蜂毒肽的实验跨膜分布被用作约束。肽的添加导致了模拟双层结构的扰动,但比实验观察到的要大。模拟的蜂毒肽分布可以精确拟合为高斯分布,其参数与观察到的参数接近,这表明这些约束可用于生成与实验一致的膜结合肽构象集合。这样的集合为在原子水平上理解肽 - 双层相互作用铺平了道路。

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