首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Application of charge density methods to a protein model compound: Calculation of Coulombic intermolecular interaction energies from the experimental charge density
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Application of charge density methods to a protein model compound: Calculation of Coulombic intermolecular interaction energies from the experimental charge density

机译:电荷密度方法在蛋白质模型化合物中的应用:根据实验电荷密度计算库仑分子间相互作用能

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A combined experimental and theoretical charge density study of the pentapeptide Boc-Gln-D-lva-Hyp-Ala-Phol (Boc, butoxycarbonyl; Gin, glutamine; lva, isovaline; Hyp, hydroxyproline; Ala, ethylalanine; Phol, phenylalaninol) is described. The experimental analysis, based on synchrotron x-ray data collected at 20 K, is combined with ab initio theoretical calculations. The topologies of the experimental and theoretical densities are analyzed in terms of the atoms in molecules quantum theory. Topological parameters, including atomic charges and higher moments integrated over the atomic basins, have been evaluated with the program TOPXD and are used to calculate the electrostatic interactions between the molecules in the crystal. The interaction energies obtained after adding dispersive and repulsive van der Waals contributions agree quite well with those based on M-B3LYP/6-31G** dimer calculations for two of the three dimers in the crystal, whereas for the third a larger stabilization is obtained than predicted by the calculation. The agreement with theory is significantly better than that obtained with multipole moments derived directly from the aspherical atom refinement. The convergence of the interaction as a function of addition of successively higher moments up to and including hexadecapoles (I= 4) is found to be within 2-3 kJ/mol. Although shortcomings of both the theoretical and experimental procedures are pointed out, the agreement obtained supports the potential of the experimental method for the evaluation of interactions in larger biologically relevant molecules.
机译:五肽Boc-Gln-D-lva-Hyp-Ala-Phol(Boc,丁氧羰基; Gin,谷氨酰胺; lva,异缬氨酸; Hyp,羟脯氨酸; Ala,乙基丙氨酸; Phol,苯丙氨醇)的组合实验和理论电荷密度研究为描述。基于在20 K下收集的同步加速器X射线数据进行的实验分析与从头算的理论计算相结合。根据分子量子理论中的原子分析了实验和理论密度的拓扑。已使用TOPXD程序评估了拓扑参数,包括原子电荷和在原子盆上积分的较高矩,并用于计算晶体中分子之间的静电相互作用。对晶体中三个二聚体中的两个进行计算,在添加色散和排斥范德华贡献后获得的相互作用能与基于M-B3LYP / 6-31G **二聚体计算得出的能量非常吻合,而对于第三个,则获得了更大的稳定性比计算所预测的要高。与理论的一致性明显优于直接从非球面原子细化得到的多极矩所获得的一致性。发现相互作用的收敛是直到并包括十六极(I = 4)的连续更高的矩相加的函数,在2-3 kJ / mol之内。尽管指出了理论和实验方法的不足,但所获得的协议支持了用于评估较大生物学相关分子中相互作用的实验方法的潜力。

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