Liu Yu, Yang Ying-Wei, Li Lei, Chen Yong
Department of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, PR China.
Org Biomol Chem. 2004 May 21;2(10):1542-8. doi: 10.1039/b402841d. Epub 2004 Apr 26.
Three beta-cyclodextrin (beta-CyD) derivatives with crown ether units, that is N-(4'-benzo-15-crown-5)-6-imino-6-deoxy-beta-CyD (2), 6,6'-[N-(4,4'-dibenzo-18-crown-6)-imino]-bridged bis(beta-CyD)(3), and 2,2'-[O-(4',5'-benzo-15-crown-5)-ethyl]-bridged bis (beta-CyD)(5), were synthesized as cooperative recognition receptor models. Their molecular binding behavior with four representative fluorescent dyes, i.e., ammonium 8-anilino-1-naphthalenesulfonate (ANS), sodium-6-toluidino-2-naphthalene-sulfonate (TNS), Acridine Red (AR) and Rhodamine B (RhB), was investigated in buffer solutions (pH = 7.20) at 25 degreesC by means of circular dichroism, NMR and fluorescence spectroscopy. 2D-ROESY experiments showed that dyad host 2 and triad host 3 adopted a CyD-guest-crown ether binding mode, while triad host 5 adopted a CyD-guest-CyD binding mode, upon inclusion complexation with guest molecules. Therefore, hosts 2 and 3 showed high molecular recognition ability towards charged guests, giving an enhanced binding ability up to 115 times for ANS by 3 and fairly high molecular selectivity up to 1450 times for the ANS/AR pair by 2 as compared with native beta-CyD in an aqueous phosphate buffer solution. On the other hand, host 5 was found to be able to effectively recognize the shape of a guest molecule, showing significantly higher binding ability towards linear guests. The binding affinities and molecular recognition abilities of these CyD-crown ether conjugates towards guest molecules are discussed from the viewpoint of electrostatic and/or hydrophobic interactions, size/shape-fit concept, and multiple recognition mechanism between host and guest.
合成了三种带有冠醚单元的β-环糊精(β-CyD)衍生物,即N-(4'-苯并-15-冠-5)-6-亚氨基-6-脱氧-β-CyD(2)、6,6'-[N-(4,4'-二苯并-18-冠-6)-亚氨基]桥联双(β-CyD)(3)和2,2'-[O-(4',5'-苯并-15-冠-5)-乙基]桥联双(β-CyD)(5),作为协同识别受体模型。通过圆二色性、核磁共振和荧光光谱法,在25℃的缓冲溶液(pH = 7.20)中研究了它们与四种代表性荧光染料,即8-苯胺基-1-萘磺酸铵(ANS)、6-甲苯胺基-2-萘磺酸钠(TNS)、吖啶红(AR)和罗丹明B(RhB)的分子结合行为。二维旋转核Overhauser效应光谱(2D-ROESY)实验表明,二元主体2和三元主体3在与客体分子形成包合物时采用β-CyD-客体-冠醚结合模式,而三元主体5采用β-CyD-客体-β-CyD结合模式。因此,主体2和3对带电客体表现出高分子识别能力,在磷酸盐水溶液中,与天然β-CyD相比,3对ANS的结合能力增强高达115倍,2对ANS/AR对的分子选择性高达1450倍。另一方面,发现主体5能够有效识别客体分子的形状,对线性客体表现出明显更高的结合能力。从静电和/或疏水相互作用、尺寸/形状匹配概念以及主体与客体之间的多重识别机制的角度,讨论了这些β-CyD-冠醚共轭物对客体分子的结合亲和力和分子识别能力。