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关于dCpG/原黄素晶体水合物中水分子的蒙特卡洛研究。

Monte Carlo studies on water in the dCpG/proflavin crystal hydrate.

作者信息

Mezei M, Beveridge D L, Berman H M, Goodfellow J M, Finney J L, Neidle S

机构信息

Chemistry Department, Hunter College of the City University of New York, N.Y. 10021.

出版信息

J Biomol Struct Dyn. 1983 Oct;1(1):287-97. doi: 10.1080/07391102.1983.10507440.

Abstract

The extensive water network identified in the crystallographic studies of the dCpG/Proflavin hydrate by Neidle, Berman and Shieh (Nature 288, 129, 1980) forms an ideal test case for a) assessing the accuracy of theoretical calculations on nucleic acid--water systems based on statistical thermodynamic computer simulation, and b) the possible use of computer simulation in predicting the water positions in crystal hydrates for use in the further refinement and interpretation of diffraction data. Monte Carlo studies have been carried out on water molecules in the unit cell of dCpG/proflavin, with the nucleic acid complex fixed and the condensed phase environment of the system treated by means of periodic boundary conditions. Intermolecular interactions are described by potential functions representative of quantum mechanical calculations developed by Clementi and coworkers, and widely used in recent studies of the aqueous hydration of various forms of DNA fragments. The results are analyzed in terms of hydrogen bond topology, hydrogen bond distances and energies, mean water positions, and water crystal probability density maps. Detailed comparison of calculated and experimentally observed results are given, and the sensitivity of results to choice of potential is determined by comparison with simulation results based on a set of empirical potentials.

摘要

Neidle、Berman和Shieh在对dCpG/硫酸原黄素水合物进行晶体学研究时发现了广泛的水网络(《自然》288, 129, 1980),这构成了一个理想的测试案例,用于:a)基于统计热力学计算机模拟评估核酸 - 水系统理论计算的准确性;b)探讨计算机模拟在预测晶体水合物中水分子位置以用于进一步精修和解释衍射数据方面的可能性。已对dCpG/硫酸原黄素晶胞中的水分子进行了蒙特卡罗研究,其中核酸复合物固定不变,系统的凝聚相环境采用周期性边界条件处理。分子间相互作用通过Clementi及其同事开发的代表量子力学计算的势函数来描述,该势函数在近期对各种形式DNA片段的水合作用研究中被广泛使用。从氢键拓扑结构、氢键距离和能量、平均水分子位置以及水晶体概率密度图等方面对结果进行了分析。给出了计算结果与实验观测结果的详细比较,并通过与基于一组经验势的模拟结果进行比较,确定了结果对势选择的敏感性。

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