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在利奈唑酮共晶的晶体结构预测中,通过固态 NMR 缩小构象空间。

Narrowing down the conformational space with solid-state NMR in crystal structure prediction of linezolid cocrystals.

机构信息

Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, Lodz, 90-363, Poland.

Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Sienkiewicza 112, Lodz, 90-363, Poland.

出版信息

Solid State Nucl Magn Reson. 2022 Oct;121:101813. doi: 10.1016/j.ssnmr.2022.101813. Epub 2022 Aug 8.

DOI:10.1016/j.ssnmr.2022.101813
PMID:35964358
Abstract

Many solids crystallize as microcrystalline powders, thus precluding the application of single crystal X-Ray diffraction in structural elucidation. In such cases, a joint use of high-resolution solid-state NMR and crystal structure prediction (CSP) calculations can be successful. However, for molecules showing significant conformational freedom, the CSP-NMR protocol can meet serious obstacles, including ambiguities in NMR signal assignment and too wide conformational search space to be covered by computational methods in reasonable time. Here, we demonstrate a possible way of avoiding these obstacles and making as much use of the two methods as possible in difficult circumstances. In a simple case, our experiments led to crystal structure elucidation of a cocrystal of linezolid (LIN), a wide-range antibiotic, with 2,3-dihydroxybenzoic acid, while a significantly more challenging case of a cocrystal of LIN with 2,4-dihydroxybenzoic acid led to the identification of the most probable conformations of LIN inside the crystal. Having four rotatable bonds, some of which can assume many discreet values, LIN molecule poses a challenge in establishing its conformation in a solid phase. In our work, a set of 27 conformations were used in CSP calculations to yield model crystal structures to be examined against experimental solid-state NMR data, leading to a reliable identification of the most probable molecular arrangements.

摘要

许多固体结晶为微晶体粉末,因此排除了单晶 X 射线衍射在结构解析中的应用。在这种情况下,高分辨率固态 NMR 和晶体结构预测 (CSP) 计算的联合使用可能会成功。然而,对于表现出显著构象自由度的分子,CSP-NMR 方案可能会遇到严重的障碍,包括 NMR 信号分配的模糊性和构象搜索空间太宽,无法在合理的时间内通过计算方法覆盖。在这里,我们展示了一种可能的方法,可以避免这些障碍,并在困难的情况下尽可能多地利用这两种方法。在一个简单的情况下,我们的实验导致了利奈唑胺 (LIN) 的共晶(LIN 是一种广谱抗生素)与 2,3-二羟基苯甲酸的晶体结构阐明,而 LIN 与 2,4-二羟基苯甲酸的共晶的情况则更加复杂,导致了晶体内部 LIN 最可能构象的鉴定。LIN 分子有四个可旋转的键,其中一些可以有许多离散的值,这在确定其在固相中的构象时带来了挑战。在我们的工作中,使用了一组 27 种构象进行 CSP 计算,以生成模型晶体结构,然后与实验固态 NMR 数据进行对照检查,从而可靠地确定了最可能的分子排列。

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