首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Experimental verification of lipid bilayer structure through multi-scale modeling.
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Experimental verification of lipid bilayer structure through multi-scale modeling.

机译:通过多尺度建模对脂质双层结构进行实验验证。

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摘要

Great progress has been made in applying coarse-grain molecular dynamics (CGMD) simulations to the investigation of membrane biophysics. In order to validate the accuracy of CGMD simulations of membranes, atomistic scale detail is necessary for direct comparison to structural experiments. Here, we present our strategy for verifying CGMD lipid bilayer simulations. Through reverse coarse graining and subsequent calculation of the bilayer electron density profile, we are able to compare the simulations to our experimental low angle X-ray scattering (LAXS) data. In order to determine the best match to the experimental data, atomistic simulations are run at a range of areas (in the NP(N)AT ensemble), starting from distinct configurations extracted from the CGMD simulation (run in the NPT ensemble). We demonstrate the effectiveness of this procedure with two small, single-component bilayers, and suggest that the greater utility of our algorithm will be for CGMD simulations of more complex structures.
机译:在将粗颗粒分子动力学(CGMD)模拟应用于膜生物物理学研究方面取得了巨大进展。为了验证CGMD模拟膜的准确性,原子尺度的细节对于直接与结构实验进行比较是必要的。在这里,我们介绍了验证CGMD脂质双层模拟的策略。通过反向粗粒度和随后的双层电子密度分布的计算,我们能够将模拟与我们的实验性低角度X射线散射(LAXS)数据进行比较。为了确定与实验数据的最佳匹配,从CGMD模拟(在NPT集合中运行)提取的不同配置开始,在一定范围内(在NP(N)AT集合中)进行原子模拟。我们用两个小的单组分双层膜证明了该程序的有效性,并建议我们算法的更大实用性将用于更复杂结构的CGMD模拟。

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