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管理超越 5 规则化学空间中的实验性 3D 结构:利福平案例。

Managing Experimental 3D Structures in the Beyond-Rule-of-5 Chemical Space: The Case of Rifampicin.

机构信息

Molecular Biotechnology and Health Sciences Dept., Università degli Studi di Torino, via Quarello 15, 10135, Torino, Italy.

Department of Chemistry, Università degli Studi di Milano, via Golgi 19, 20133, Milano, Italy.

出版信息

Chemistry. 2021 Jul 16;27(40):10394-10404. doi: 10.1002/chem.202100961. Epub 2021 Jun 10.

Abstract

The beyond-Rule-of-5 (bRo5) chemical space is a source of new oral drugs and includes large and flexible compounds. Because of their size and conformational variability, bRo5 molecules assume different privileged conformations in the compartments of human body, i. e., they can exhibit chameleonic properties. The elucidation of the ensemble of 3D structures explored by such molecules under different conditions is therefore critical to check the role played by chameleonicity to modulate cell permeability. Here we characterized the conformational ensembles of rifampicin, a bRo5 drug, in polar and nonpolar solvents and in the solid state. We performed NMR experiments, analyzed their results with a novel algorithm and set-up a pool of ad hoc in silico strategies to investigate crystallographic structures retrieved from the CSD. Moreover, a polarity descriptor often related to permeability (SA-3D-PSA) was calculated for all the conformers and its variation with the environment analyzed. Results showed that the conformational behavior of rifampicin in solution and in the solid state is not superposable. The identification of dynamic intramolecular hydrogen bonds can be assessed by NMR spectroscopy but not by X-ray structures. Moreover, SA-3D-PSA revealed that dynamic IMHBs do not provide rifampicin with chameleonic properties. Overall, this study highlights that the peculiarity of rifampicin, which is cell permeable probably because of the presence of static IMHBs but is devoid of any chameleonic behavior, can be assessed by a proper analysis of experimental 3D structures.

摘要

超越规则 5(bRo5)化学空间是新型口服药物的来源,其中包含大型且灵活的化合物。由于其体积大和构象可变性,bRo5 分子在人体隔室中呈现不同的优势构象,即它们可以表现出变色龙特性。因此,阐明此类分子在不同条件下所探索的 3D 结构组合对于检查变色龙特性在调节细胞通透性方面的作用至关重要。在这里,我们研究了 rifampicin(一种 bRo5 药物)在极性和非极性溶剂中和固态下的构象组合。我们进行了 NMR 实验,使用一种新算法分析了它们的结果,并建立了一个专用的计算策略库,以研究从 CSD 中检索到的晶体结构。此外,还计算了所有构象的与通透性相关的极性描述符(SA-3D-PSA),并分析了其随环境的变化。结果表明,rifampicin 在溶液中和固态下的构象行为不可叠加。通过 NMR 光谱可以评估分子内氢键的动态变化,但 X 射线结构则不行。此外,SA-3D-PSA 表明,动态 IMHB 并未赋予 rifampicin 变色龙特性。总的来说,这项研究强调了 rifampicin 的特殊性,由于存在静态 IMHB,因此它具有细胞渗透性,但没有任何变色龙行为,通过对实验 3D 结构的适当分析可以评估 rifampicin 的这些特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b42/8361677/e3c4c066de2c/CHEM-27-10394-g008.jpg

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