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Out of Sight Out of Mind: The Effect of the Equilibration Protocol on the Structural Ensembles of Charged Glycolipid Bilayers

机译:不见了心不在焉:平衡协议对带电糖脂双层的结构集合的影响

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摘要

Molecular dynamics (MD) simulations represent an essential tool in the toolbox of modern chemistry, enabling the prediction of experimental observables for a variety of chemical systems and processes and majorly impacting the study of biological membranes. However, the chemical diversity of complex lipids beyond phospholipids brings new challenges to well-established protocols used in MD simulations of soft matter and requires continuous assessment to ensure simulation reproducibility and minimize unphysical behavior. Lipopolysaccharides (LPS) are highly charged glycolipids whose aggregation in a lamellar arrangement requires the binding of numerous cations to oppositely charged groups deep inside the membrane. The delicate balance between the fully hydrated carbohydrate region and the smaller hydrophobic core makes LPS membranes very sensitive to the choice of equilibration protocol. In this work, we show that the protocol successfully used to equilibrate phospholipid bilayers when applied to complex lipopolysaccharide membranes occasionally leads to a small expansion of the simulation box very early in the equilibration phase. Although the use of a barostat algorithm controls the system dimension and particle distances according to the target pressure, fluctuation in the fleeting pressure occasionally enables a few water molecules to trickle into the hydrophobic region of the membrane, with spurious solvent buildup. We show that this effect stems from the initial steps of NPT equilibration, where initial pressure can be fairly high. This can be solved with the use of a stepwise-thermalization NVT/NPT protocol, as demonstrated for atomistic MD simulations of LPS/DPPE and lipid-A membranes in the presence of different salts using an extension of the GROMOS forcefield within the GROMACS software. This equilibration protocol should be standard procedure for the generation of consistent structural ensembles of charged glycolipids starting from atomic coordinates not previously pre-equilibrated. Although different ways to deal with this issue can be envisioned, we investigated one alternative that could be readily available in major MD engines with general users in mind.
机译:分子动力学(MD)模拟代表现代化学工具箱中的一个基本工具,使得能够预测各种化学系统和过程的实验可观察,并且主要影响生物膜的研究。然而,除磷脂之外的复杂脂质的化学多样性为柔软物质的MD模拟中使用的良好的协议带来了新的挑战,并且需要连续评估,以确保模拟再现性并最大限度地减少不受神经的行为。脂多糖(LPS)是高度带电的糖脂,其在层状布置中的聚集需要许多阳离子的结合在膜内的深深的相反的带电基团。完全水合碳水化合物区域和较小的疏水芯之间的微妙平衡使LPS膜对平衡方案的选择非常敏感。在这项工作中,我们表明,当施加到复杂的脂多糖膜时成功地用于平衡磷脂双层的方案偶尔导致仿真盒的小膨胀在平衡阶段。尽管使用Barostat算法根据目标压力来控制系统尺寸和粒子距离,但是在短暂的压力下的波动偶尔使少量水分子能够滴入膜的疏水区域,具有伪溶剂堆积。我们表明这种效果源于NPT平衡的初始步骤,其中初始压力可以相当高。这可以通过使用逐步热化NVT / NPT协议来解决,如使用Gromacs软件内的Gromos Forcefield的延伸在不同盐存在下LPS / DPPE和脂质 - 膜的原子MD模拟。该平衡协议应该是从先前预先平衡的原子坐标开始产生带电糖脂的一致结构集合的标准程序。虽然可以设想不同的方式处理这个问题的方法,但我们调查了一个可以随时可用的替代方案,并考虑到一般用户。

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