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隐式溶剂化的拉盖尔相交法

LAGUERRE-INTERSECTION METHOD FOR IMPLICIT SOLVATION.

作者信息

Hummel Michelle Hatch, Yu Bihua, Simmerling Carlos, Coutsias Evangelos A

机构信息

Department of Applied Mathematics and Statistics, Stony Brook University, Stony Brook, NY 11794, USA

Department of Chemistry and Laufer Center, Stony Brook University, Stony Brook, NY 11794, USA

出版信息

Int J Comput Geom Appl. 2018 Mar;28(1):1-38. doi: 10.1142/s0218195918500012. Epub 2018 Mar 29.

Abstract

Explicit solvent molecular dynamics simulations of a macromolecule are slow as the number of solvent atoms considered typically increases by order of magnitude. Implicit methods introduce surface-dependent corrections to the force field, gaining speed at the expense of accuracy. Properties such as molecular interface surfaces, volumes and cavities are captured by Laguerre tessellations of macromolecules. However, Laguerre cells of exterior atoms tend to be overly large or unbounded. Our method, the inclusion-exclusion based Laguerre-Intersection method, caps cells in a physically accurate manner by considering the intersection of the space-filling diagram with the Laguerre tessellation. We optimize an adjustable parameter, the weight, to ensure the areas and volumes of capped cells exposed to solvent are as close as possible, on average, to those computed from equilibrated explicit solvent simulations. The contact planes are radical planes, meaning that as the solvent weight is varied, interior cells remain constant. We test the consistency of our model using a high-quality trajectory of HIV-protease, a dimer with flexible loops and open-close transitions. We also compare our results with interval-arithmetic Gauss-Bonnet based method. Optimal solvent parameters quickly converge, which we use to illustrate the increased fidelity of the Laguerre-Intersection method over two recently proposed methods as compared to the explicit model.

摘要

对大分子进行显式溶剂分子动力学模拟的速度很慢,因为所考虑的溶剂原子数量通常会增加一个数量级。隐式方法会对力场引入与表面相关的校正,以牺牲准确性为代价来提高速度。诸如分子界面表面、体积和空腔等性质可通过大分子的拉盖尔镶嵌来捕捉。然而,外部原子的拉盖尔单元往往过大或无界。我们的方法,即基于包含-排除的拉盖尔-相交方法,通过考虑空间填充图与拉盖尔镶嵌的相交,以物理上准确的方式限制单元。我们优化一个可调参数,即权重,以确保平均而言,暴露于溶剂的受限单元的面积和体积尽可能接近从平衡显式溶剂模拟计算得到的结果。接触平面是径向平面,这意味着随着溶剂权重的变化,内部单元保持不变。我们使用HIV蛋白酶的高质量轨迹(一种具有柔性环和开合转变的二聚体)来测试我们模型的一致性。我们还将我们的结果与基于区间算术高斯-博内方法进行比较。最优溶剂参数迅速收敛,我们用此来说明与显式模型相比,拉盖尔-相交方法相对于最近提出的两种方法具有更高的保真度。

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LAGUERRE-INTERSECTION METHOD FOR IMPLICIT SOLVATION.隐式溶剂化的拉盖尔相交法
Int J Comput Geom Appl. 2018 Mar;28(1):1-38. doi: 10.1142/s0218195918500012. Epub 2018 Mar 29.

本文引用的文献

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Implicit nonpolar solvent models.隐式非极性溶剂模型。
J Phys Chem B. 2007 Oct 25;111(42):12263-74. doi: 10.1021/jp073399n. Epub 2007 Oct 5.

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