Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University, 7-1 Kioi-cho, Chiyoda, Tokyo 102-8554, Japan.
Department of Current Legal Studies, Faculty of Law, Meiji Gakuin University, 1518 Kamikurata-cho, Totsuka-ku, Yokohama, Kanagawa 244-8539, Japan.
Molecules. 2018 Mar 12;23(3):635. doi: 10.3390/molecules23030635.
The construction of supramolecular recognition systems based on specific host-guest interactions has been studied in order to design selective chemical sensors. In this study, guest-responsive receptors for ATP have been designed with cyclodextrins (CyDs) as a basic prototype of the turn-on type fluorescent indicator. We synthesized dipicolylamine (DPA)-modified CyD-Cu complexes (, , and ), and evaluated their recognition capabilities toward phosphoric acid derivatives in water. The UV-Vis absorption and fluorescence spectra revealed that selectively recognized ATP over other organic and inorganic phosphates, and that -CyD had the most suitable cavity size for complexation with ATP. The 1D and 2D NMR analyses suggested that the ATP recognition was based on the host-guest interaction between the adenine moiety of ATP and the CyD cavity, as well as the recognition of phosphoric moieties by the Cu-DPA complex site. The specific interactions between the CyD cavity and the nucleobases enabled us to distinguish ATP from other nucleoside triphosphates, such as guanosine triphosphate (GTP), uridine triphosphate (UTP), and cytidine triphosphate (CTP). This study clarified the basic mechanisms of molecular recognition by modified CyDs, and suggested the potential for further application of CyDs in the design of highly selective supramolecular recognition systems for certain molecular targets in water.
基于特定主客体相互作用的超分子识别体系的构建一直是设计选择性化学传感器的研究热点。在本研究中,我们以环糊精(CyD)为基本原型,设计了对 ATP 具有响应性的主体,作为开启型荧光指示剂。我们合成了二吡啶甲胺(DPA)修饰的 CyD-Cu 配合物(,, 和 ),并在水中评估了它们对磷酸衍生物的识别能力。紫外可见吸收和荧光光谱表明, 选择性地识别 ATP 而不是其他有机和无机磷酸盐,并且 -CyD 具有与 ATP 络合的最合适的空腔大小。1D 和 2D NMR 分析表明,ATP 的识别基于 ATP 的腺嘌呤部分与 CyD 空腔之间的主客体相互作用,以及 Cu-DPA 配合物位点对磷酸部分的识别。CyD 空腔与碱基之间的特异性相互作用使我们能够区分 ATP 与其他核苷三磷酸,如鸟苷三磷酸(GTP)、尿苷三磷酸(UTP)和胞苷三磷酸(CTP)。本研究阐明了修饰的 CyD 进行分子识别的基本机制,并为进一步应用 CyD 在设计对水中特定分子靶标具有高选择性的超分子识别体系方面提供了依据。