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首页> 外文期刊>Proteins: Structure, Function, and Genetics >The key role of atom types, reference states, and interaction cutoff radii in the knowledge-based method: new variational approach.
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The key role of atom types, reference states, and interaction cutoff radii in the knowledge-based method: new variational approach.

机译:原子类型,参考状态和相互作用截止半径在基于知识的方法中的关键作用:新的变分方法。

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摘要

We present a variational method to derive knowledge-based potentials. The method is based on an optimization procedure of objective variables: atom types, reference states, and interaction cutoff radii. We suggest and apply new unsymmetrical reference states. The cutoff radii and atom types are optimized to improve docking accuracy of the corresponding potentials. The atom types are varied along an atom type tree, with 6 root and 49 top atom types, and the set of 18 optimal atom types is obtained. We demonstrate strong dependence between the choice of atom types and the docking accuracy of the potentials derived with these atom types. The averaged root-mean square deviations (RMSDs) of the ligand docked positions relative to the experimentally determined positions decrease when the elements C, N, O are split into the optimal types.
机译:我们提出了一种变分方法来得出基于知识的潜力。该方法基于目标变量的优化过程:原子类型,参考状态和相互作用截止半径。我们建议并应用新的非对称参考状态。优化了截止半径和原子类型,以提高相应电势的对接精度。原子类型沿原子类型树变化,具有6个根原子和49个顶部原子类型,并获得18个最佳原子类型的集合。我们证明了原子类型的选择与这些原子类型衍生的电势对接精度之间的强烈依赖性。当将元素C,N,O分为最佳类型时,相对于实验确定的位置,配体对接位置的平均均方根偏差(RMSDs)减小。

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