Vshyvenko Sergey, Clapson Marissa L, Suzuki Itaru, Hall Dennis G
Department of Chemistry, 4-010 Centennial Centre for Interdisciplinary Science, University of Alberta , Edmonton, Alberta T6G 2G2, Canada.
ACS Med Chem Lett. 2016 Sep 21;7(12):1097-1101. doi: 10.1021/acsmedchemlett.6b00300. eCollection 2016 Dec 8.
Benzoxaboroles are a class of five-membered hemiboronic acids that recently attracted significant attention as a new pharmacophore on account of their unique structural and physicochemical properties and their ability to interact selectively with biomolecules. Their structural behavior in water and its effect on their physiological properties remain unclear, especially the question of dynamic hydrolytic equilibrium of the oxaborole ring. Herein, we used NMR spectroscopy, in mixed aqueous-organic solvent, to confirm the strong preference for the closed form of benzoxaborole and its six- and seven-membered homologues over the open boronic acid form. Only with the eight-membered homologue does the cyclic form become unfavorable. Using dynamic VT-NMR studies with designed probe compound , we demonstrate that the oxaborole ring undergoes rapid hydrolytic ring closing-opening at ambient temperature at a rate of >100 Hz via a mechanism featuring rate-limiting proton-transfer steps. This knowledge can help provide a better understanding of the behavior of benzoxaboroles in biological systems.
苯并氧杂硼戊环是一类五元半硼酸,由于其独特的结构和物理化学性质以及与生物分子选择性相互作用的能力,最近作为一种新的药效基团引起了广泛关注。它们在水中的结构行为及其对生理性质的影响仍不清楚,尤其是氧杂硼戊环的动态水解平衡问题。在此,我们在混合水-有机溶剂中使用核磁共振光谱,证实了苯并氧杂硼戊环及其六元、七元同系物相比于开环硼酸形式,强烈倾向于闭环形式。只有八元同系物的环状形式变得不利。通过使用设计的探针化合物进行动态变温核磁共振研究,我们证明氧杂硼戊环在环境温度下通过以限速质子转移步骤为特征的机制,以>100 Hz的速率经历快速水解闭环-开环过程。这一知识有助于更好地理解苯并氧杂硼戊环在生物系统中的行为。