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通过X射线晶体学确定的糖肽类抗生素与复合物中底物之间的相互作用能:非球形原子理论数据库和基于对称适应微扰理论的原子间势集的应用。

Interaction energies between glycopeptide antibiotics and substrates in complexes determined by X-ray crystallography: application of a theoretical databank of aspherical atoms and a symmetry-adapted perturbation theory-based set of interatomic potentials.

作者信息

Li Xue, Volkov Anatoliy V, Szalewicz Krzysztof, Coppens Philip

机构信息

Chemistry Department, State University of New York at Buffalo, Buffalo, NY 14260-3000, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2006 Jun;62(Pt 6):639-47. doi: 10.1107/S0907444906013072. Epub 2006 May 12.

DOI:10.1107/S0907444906013072
PMID:16699191
Abstract

Intermolecular interaction energies between fragments of glycopeptide antibiotics and small peptide ligands are evaluated using geometries determined by X-ray crystallography and recently developed methods suitable for application to very large molecular complexes. The calculation of the electrostatic contributions is based on charge densities constructed with a databank of transferable aspherical atoms described by nucleus-centered spherical harmonic density functions, and uses the accurate and fast EPMM method. Dispersion, induction and exchange-repulsion contributions are evaluated with atom-atom potentials fitted to intermolecular energies from SAPT (symmetry-adapted perturbation theory) calculations on a large number of molecules. For a number of the complexes, first-principle calculations using density functional theory have been performed for comparison. Results of the new methods agree within reasonable bounds with those from DFT calculations, while being obtained at a fraction (less than 1%) of the computer time. A strong dependence on the geometry of the interaction is found, even when the number of hydrogen bonds between the substrate and antibiotic fragment is the same. While high-resolution X-ray data are required to obtain interaction energies at a quantitative level, the techniques developed have potential for joint X-ray/energy refinement of macromolecular structures.

摘要

利用X射线晶体学确定的几何结构以及最近开发的适用于非常大的分子复合物的方法,评估了糖肽抗生素片段与小肽配体之间的分子间相互作用能。静电贡献的计算基于由核中心球谐密度函数描述的可转移非球形原子数据库构建的电荷密度,并使用准确且快速的EPMM方法。色散、诱导和交换排斥贡献通过拟合大量分子的SAPT(对称适配微扰理论)计算得到的分子间能量的原子 - 原子势来评估。对于一些复合物,已经进行了使用密度泛函理论的第一性原理计算以作比较。新方法的结果在合理范围内与DFT计算结果一致,同时计算时间仅为其几分之一(小于1%)。即使底物与抗生素片段之间的氢键数量相同,也发现相互作用对几何结构有很强的依赖性。虽然需要高分辨率X射线数据才能在定量水平上获得相互作用能,但所开发的技术具有对大分子结构进行联合X射线/能量精修的潜力。

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