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Multiscale molecular dynamics simulations of sodium dodecyl sulfate micelles: from coarse-grained to all-atom resolution

机译:十二烷基硫酸钠胶束的多尺度分子动力学模拟:从粗粒度到全原子分辨率

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摘要

Sodium dodecyl sulfate (SDS) is a well-known anionic detergent widely used in both experimental and theoretical investigations. Many molecular dynamics (MD) simulation have been performed on the SDS molecule at coarsegrained (CG), united-atom (UA), and all-atom (AA) resolutions. However, these simulations are usually based on general parameters determined from large sets of molecules, and as a result, peculiar molecular specificities are often poorly represented. In addition, the parameters (ideal bond lengths, angles, dihedrals and charge distribution) differ according to the resolution, highlighting a lack of coherence. We therefore propose a new set of parameters for CG, UA, and AA resolutions based on a high quantum mechanics (QM) level optimization of the detergent structure and the charge distribution. For the first time, QM-optimized parameters were directly applied to build the AA, UA, and CG model of the SDS molecule, leading to a more coherent description. As a test case, MD simulations were then performed on SDS preformed micelles as previous experimental and theoretical investigations allow direct comparison with our new sets of parameters. While all three models yield similar macromolecular properties (size, shape, and accessible surface) perfectly matching previous results, the attribution of more coherent parameters to SDS enables the description of the specific interactions inside and outside the micelle. These more consistent parameters can now be used to accurately describe new multi-scale systems involving the SDS molecule.
机译:十二烷基硫酸钠(SDS)是一种众所周知的阴离子洗涤剂,广泛用于实验和理论研究。在SDS分子上已以粗粒度(CG),联合原子(UA)和全原子(AA)分辨率进行了许多分子动力学(MD)模拟。但是,这些模拟通常基于从大量分子中确定的一般参数,因此,通常无法很好地表现出特殊的分子特异性。另外,参数(理想的键长,角度,二面体和电荷分布)根据分辨率而有所不同,这突出说明了缺乏连贯性。因此,我们基于去垢剂结构和电荷分布的高量子力学(QM)级优化,为CG,UA和AA分辨率提出了一组新参数。首次将QM优化的参数直接应用于构建SDS分子的AA,UA和CG模型,从而获得更加连贯的描述。作为测试案例,然后在SDS预制胶束上进行了MD模拟,因为先前的实验和理论研究可以直接与我们的新参数集进行比较。尽管所有三个模型均产生相似的大分子性质(大小,形状和可接近的表面),与先前的结果完全匹配,但SDS具有更多相干参数,可以描述胶束内部和外部的特定相互作用。这些更一致的参数现在可用于准确描述涉及SDS分子的新的多尺度系统。

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