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分子高斯曲面的参数化及曲面网格生成的比较研究

Parameterization for molecular Gaussian surface and a comparison study of surface mesh generation.

作者信息

Liu Tiantian, Chen Minxin, Lu Benzhuo

机构信息

State Key Laboratory of Scientific and Engineering Computing, National Center for Mathematics and Interdisciplinary Sciences, Academy of Mathematics and Systems Science, Chinese Academy of Sciences, Beijing, 100190, China.

出版信息

J Mol Model. 2015 May;21(5):113. doi: 10.1007/s00894-015-2654-9. Epub 2015 Apr 12.

Abstract

The molecular Gaussian surface has been frequently used in the field of molecular modeling and simulation. Typically, the Gaussian surface is defined using two controlling parameters; the decay rate and isovalue. Currently, there is a lack of studies in which a systematic approach in the determination of optimal parameterization according to the geometric features has been done. In this paper, surface area, volume enclosed by the surface and Hausdorff distance are used as three criteria for the parameterization to make the Gaussian surface approximate the solvent excluded surface (SES) well. For each of these three criteria, a search of the parameter space is carried out in order to determine the optimal parameter values. The resulted parameters are close to each other and result in similar calculated molecular properties. Approximation of the VDW surface is also done by analyzing the explicit expressions of the Gaussian surface and VDW surface, which analysis and parameters can be similarly applied to the solvent accessible surface (SAS) due to its geometric similarity to the VDW surface. Once the optimal parameters are obtained, we compare the performance of our Gaussian surface generation software TMSmesh with other commonly used software programs, focusing primarily on mesh quality and fidelity. Additionally, the Poisson-Boltzmann solvation energies based on the surface meshes generated by TMSmesh and those generated by other software programs are calculated and compared for a set of molecules with different sizes. The results of these comparisons validate both the accuracy and the applicability of the parameterized Gaussian surface.

摘要

分子高斯表面在分子建模与模拟领域中经常被使用。通常,高斯表面是通过两个控制参数来定义的,即衰减率和等值面值。目前,缺乏根据几何特征来确定最优参数化的系统方法的研究。在本文中,表面积、表面所包围的体积和豪斯多夫距离被用作参数化的三个标准,以使高斯表面能很好地近似溶剂可及表面(SES)。对于这三个标准中的每一个,都要对参数空间进行搜索,以确定最优参数值。得到的参数彼此接近,并且导致相似的计算分子性质。通过分析高斯表面和范德华表面的显式表达式,也可以对范德华表面进行近似,由于其与范德华表面的几何相似性,这种分析和参数可以类似地应用于溶剂可及表面(SAS)。一旦获得了最优参数,我们就将我们的高斯表面生成软件TMSmesh与其他常用软件程序的性能进行比较,主要关注网格质量和保真度。此外,针对一组不同大小的分子,计算并比较了基于TMSmesh生成的表面网格以及其他软件程序生成的表面网格的泊松-玻尔兹曼溶剂化能。这些比较结果验证了参数化高斯表面的准确性和适用性。

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