Takakusa H, Kikuchi K, Urano Y, Higuchi T, Nagano T
Graduate School of Pharmaceutical Sciences, The University of Tokyo, Japan.
Anal Chem. 2001 Mar 1;73(5):939-42. doi: 10.1021/ac001016a.
In aqueous solutions, the fluorescence of the intramolecular fluorescence resonance energy-transfer (FRET) system 1 was strongly quenched, because of close contact between the donor and acceptor moieties. FRET occurred, and the acceptor fluorescence was increased, by adding beta-cyclodextrin (beta-CD) to aqueous solutions of 1. Spectral analysis supported the idea that the FRET enhancement was due to the formation of an inclusion complex of the coumarin moiety in beta-CD, resulting in separation of the fluorophores. On the basis of this result, we propose that covalent binding of coumarin to beta-CD will provide a FRET cassette molecule. So, compound 2 bearing beta-CD covalently was designed and synthesized. Fluorescence intensity of 2 was enhanced markedly compared to the intensity of 3. Applying this FRET system, various FRET probes that will be useful for ratio imaging and also the high-throughput screening will be provided.
在水溶液中,分子内荧光共振能量转移(FRET)体系1的荧光由于供体和受体部分紧密接触而被强烈猝灭。通过向1的水溶液中加入β-环糊精(β-CD),发生了FRET,受体荧光增强。光谱分析支持了FRET增强是由于β-CD中香豆素部分形成包合物,导致荧光团分离的观点。基于这一结果,我们提出香豆素与β-CD的共价结合将提供一个FRET盒式分子。因此,设计并合成了共价连接β-CD的化合物2。与3的强度相比,2的荧光强度显著增强。应用该FRET体系,将提供各种可用于比率成像和高通量筛选的FRET探针。