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蛋白质-蛋白质对接模拟中的筛选电荷静电模型。

Screened charge electrostatic model in protein-protein docking simulations.

作者信息

Fernandez-Recio Juan, Totrov Maxim, Abagyan Ruben

机构信息

Department of Molecular Biology, Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.

出版信息

Pac Symp Biocomput. 2002:552-63.

Abstract

A new method for considering solvation when calculating electrostatics for protein docking is proposed. The solvent-exposed charges are attenuated by induced solvent polarization charges. Modified charges are pre-calculated and the correction doesn't affect the speed of the actual simulation. The new Screened Charge Electrostatic Model (SChEM) results in an improved discrimination of near-native solutions from false positives in docking simulations as compared to conventional 'non-solvated' charge assignment. A series of protein-protein complexes were analyzed by running automated rigid-body Monte-Carlo docking simulations using the 3-D coordinates of the unbound components. In all but one case, the use of solvation screened charges for electrostatic calculations helped to improve the rank of the near-native solution after rigid-body simulations. The SChEM also drastically improved the results of the subsequent refinement of the interface side-chains. In all cases the final lowest energy solution was found within 3.0 A r.m.s.d. of the crystal structure.

摘要

提出了一种在计算蛋白质对接静电时考虑溶剂化的新方法。溶剂暴露电荷被诱导的溶剂极化电荷衰减。预先计算修改后的电荷,且这种校正不会影响实际模拟的速度。与传统的“非溶剂化”电荷分配相比,新的筛选电荷静电模型(SChEM)在对接模拟中能更好地区分近天然溶液与假阳性结果。使用未结合组分的三维坐标,通过运行自动刚体蒙特卡罗对接模拟对一系列蛋白质-蛋白质复合物进行了分析。除了一个案例外,在所有情况下,使用溶剂化筛选电荷进行静电计算有助于提高刚体模拟后近天然溶液的排名。SChEM还极大地改善了后续界面侧链优化的结果。在所有情况下,最终最低能量解在晶体结构的3.0 Å均方根偏差内被找到。

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