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灵活的羟基构象能否通过简单的核磁共振晶体学方法来限制?槲皮素固体形式的情况。

Can the conformation of flexible hydroxyl groups be constrained by simple NMR crystallography approaches? The case of the quercetin solid forms.

作者信息

Filip Xenia, Filip Claudiu

机构信息

National Institute for R&D of Isotopic and Molecular Technologies, P.O. Box 700, 400293 Cluj, Romania.

National Institute for R&D of Isotopic and Molecular Technologies, P.O. Box 700, 400293 Cluj, Romania.

出版信息

Solid State Nucl Magn Reson. 2015 Feb;65:21-8. doi: 10.1016/j.ssnmr.2014.10.006. Epub 2014 Nov 4.

Abstract

Hydrogen atoms in systems with many flexible hydroxyl side-groups are difficult to be exactly located from experimental X-Ray diffraction and/or solid-state NMR data, thus often leading to wrong conclusions with respect to the hydrogen bonding network established in crystal lattice. A simple computational method is proposed in the present work to tackle this problem, which may be readily incorporated in conventional NMR crystallography protocols. The method is based on ranking all possible conformations of the flexible hydroxyls according to their lattice energy in crystalline environments. Its effectiveness is investigated on two distinct solid forms of quercetin, for which only two out of the five hydroxyl side-groups can be well constrained from experimental/theoretical data. For this purpose, first-principle quantum-mechanical computations were combined with calculations at the molecular mechanics (MM) level of theory, and previous ss-NMR and X-Ray diffraction data. To assess accuracy in ranking the identified conformers, tests have been performed first on quercetin dihydrate, for which an X-Ray single-crystal structure is available. The possibility of applying this method in a real NMR crystallography context has been investigated finally on anhydrous quercetin, for which only powder X-Ray crystal structure has been reported so far.

摘要

在具有许多灵活羟基侧基的体系中,氢原子很难从实验X射线衍射和/或固态核磁共振数据中精确确定位置,因此常常会对晶格中建立的氢键网络得出错误结论。本文提出了一种简单的计算方法来解决这个问题,该方法可以很容易地纳入传统的核磁共振晶体学协议中。该方法基于根据柔性羟基在晶体环境中的晶格能量对所有可能的构象进行排序。在槲皮素的两种不同固态形式上研究了其有效性,对于这两种形式,从实验/理论数据中只能很好地约束五个羟基侧基中的两个。为此,将第一性原理量子力学计算与分子力学(MM)理论水平的计算以及先前的固态核磁共振和X射线衍射数据相结合。为了评估对所识别构象进行排序的准确性,首先在有水合槲皮素上进行了测试,其具有X射线单晶结构。最后在无水槲皮素上研究了在实际核磁共振晶体学环境中应用该方法的可能性,到目前为止,无水槲皮素仅报道了粉末X射线晶体结构。

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