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氢键的共价-静电联合模型利用Rosetta改进了结构预测。

Combined covalent-electrostatic model of hydrogen bonding improves structure prediction with Rosetta.

作者信息

O'Meara Matthew J, Leaver-Fay Andrew, Tyka Michael D, Stein Amelie, Houlihan Kevin, DiMaio Frank, Bradley Philip, Kortemme Tanja, Baker David, Snoeyink Jack, Kuhlman Brian

机构信息

Department of Computer Science, University of North Carolina, 201 South Columbia Street, Chapel Hill, North Carolina 27599, United States

出版信息

J Chem Theory Comput. 2015 Feb 10;11(2):609-22. doi: 10.1021/ct500864r.

Abstract

Interactions between polar atoms are challenging to model because at very short ranges they form hydrogen bonds (H-bonds) that are partially covalent in character and exhibit strong orientation preferences; at longer ranges the orientation preferences are lost, but significant electrostatic interactions between charged and partially charged atoms remain. To simultaneously model these two types of behavior, we refined an orientation dependent model of hydrogen bonds [Kortemme et al. J. Mol. Biol. 2003, 326, 1239] used by the molecular modeling program Rosetta and then combined it with a distance-dependent Coulomb model of electrostatics. The functional form of the H-bond potential is physically motivated and parameters are fit so that H-bond geometries that Rosetta generates closely resemble H-bond geometries in high-resolution crystal structures. The combined potentials improve performance in a variety of scientific benchmarks including decoy discrimination, side chain prediction, and native sequence recovery in protein design simulations and establishes a new standard energy function for Rosetta.

摘要

极性原子之间的相互作用很难进行建模,因为在非常短的距离内它们会形成氢键(H键),这种氢键具有部分共价性质,并表现出强烈的取向偏好;在较长距离时,取向偏好消失,但带电原子和部分带电原子之间仍存在显著的静电相互作用。为了同时对这两种行为进行建模,我们改进了分子建模程序Rosetta所使用的一种依赖取向的氢键模型[Kortemme等人,《分子生物学杂志》,2003年,第326卷,第1239页],然后将其与一种依赖距离的静电库仑模型相结合。氢键势的函数形式有物理依据,并且对参数进行了拟合,以使Rosetta生成的氢键几何结构与高分辨率晶体结构中的氢键几何结构非常相似。在包括诱饵判别、侧链预测以及蛋白质设计模拟中的天然序列恢复等各种科学基准测试中,组合后的势提高了性能,并为Rosetta建立了一个新的标准能量函数。

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