Forensic Science Center, Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, CA 94550, USA.
Magn Reson Chem. 2012 Mar;50(3):229-35. doi: 10.1002/mrc.3803. Epub 2012 Mar 1.
The binding stoichiometry, strength and structure of inclusion complexes formed between the neurotoxin tetramethylenedisulfotetramine (TETS) and both native and modified cyclodextrins (CyDs) were investigated using nuclear magnetic resonance (NMR) spectroscopy. Of all six examined cases, native β-cyclodextrin (β-CyD) and its chemically modified counterpart heptakis-(2,3,6-tris-(2-hydroxypropyl))-β-cyclodextrin (2HP-β-CyD) were found to associate most strongly with TETS as reflected in the magnitude of their binding constants (K = 537 ± 26 M(-1) for β-CyD and K = 514 ± 49 M(-1) for 2HP-β-CyD). Two-dimensional rotating-frame Overhauser effect spectroscopy NMR experiments confirm close proximity of the TETS molecule to both β-CyD and 2HP-β-CyD as intermolecular, through-space interactions between the H3 and H5 protons located in the interior of the CyD cavity and the methylene protons of TETS were identified.
使用核磁共振(NMR)光谱研究了神经毒素四亚甲基二砜四胺(TETS)与天然和修饰环糊精(CyD)之间形成的包合物的结合化学计量、强度和结构。在所检查的六种情况中,天然β-环糊精(β-CyD)及其化学修饰的对应物七(2,3,6-三(2-羟丙基))-β-环糊精(2HP-β-CyD)与 TETS 的结合最强,这反映在它们的结合常数的大小上(β-CyD 的 K = 537 ± 26 M(-1),2HP-β-CyD 的 K = 514 ± 49 M(-1))。二维旋转框架 Overhauser 效应光谱 NMR 实验证实 TETS 分子与β-CyD 和 2HP-β-CyD 非常接近,因为位于 CyD 腔体内的 H3 和 H5 质子与 TETS 的亚甲基质子之间存在分子间、通过空间相互作用。