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一种基于光谱重叠积分的荧光共振能量转移切换的比率荧光探针的新型设计方法。

A novel design method of ratiometric fluorescent probes based on fluorescence resonance energy transfer switching by spectral overlap integral.

作者信息

Takakusa Hideo, Kikuchi Kazuya, Urano Yasuteru, Kojima Hirotatsu, Nagano Tetsuo

机构信息

Graduate School of Pharmaceutical Sciences, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, 113-0033, Japan.

出版信息

Chemistry. 2003 Apr 4;9(7):1479-85. doi: 10.1002/chem.200390167.

Abstract

A ratiometric measurement, namely, simultaneous recording of the fluorescence intensities at two wavelengths and calculation of their ratio, allows greater precision than measurements at a single wavelength, and is suitable for cellular imaging studies. Here we describe a novel method of designing probes for ratiometric measurement of hydrolytic enzyme activity based on switching of fluorescence resonance energy transfer (FRET). This method employs fluorescent probes with a 3'-O,6'-O-protected fluorescein acceptor linked to a coumarin donor through a linker moiety. As there is no spectral overlap integral between the coumarin emission and fluorescein absorption, the fluorescein moiety cannot accept the excitation energy of the donor moiety and the donor fluorescence can be observed. After cleavage of the protective groups by hydrolytic enzymes, the fluorescein moiety shows a strong absorption in the coumarin emission region, and then acceptor fluorescence due to FRET is observed. Based on this mechanism, we have developed novel ratiometric fluorescent probes (1-3) for protein tyrosine phosphatase (PTP) activity. They exhibit a large shift in their emission wavelength after reaction with PTPs. The fluorescence quenching problem that usually occurs with FRET probes is overcome by using the coumarin-cyclohexane-fluorescein FRET cassette moiety, in which close contact of the two dyes is hindered. After study of their chemical and kinetic properties, we have concluded that compounds 1 and 2 bearing a rigid cyclohexane linker are practically useful for the ratiometric measurement of PTPs activity. The design concept described in this paper, using FRET switching by spectral overlap integral and a rigid link that prevents close contact of the two dyes, should also be applicable to other hydrolytic enzymes by introducing other appropriate enzyme-cleavable groups into the fluorescein acceptor.

摘要

比率测量,即同时记录两个波长处的荧光强度并计算其比率,比单波长测量具有更高的精度,适用于细胞成像研究。在此,我们描述了一种基于荧光共振能量转移(FRET)切换设计用于水解酶活性比率测量的探针的新方法。该方法采用荧光探针,其3'-O,6'-O保护的荧光素受体通过连接基团与香豆素供体相连。由于香豆素发射和荧光素吸收之间不存在光谱重叠积分,荧光素部分不能接受供体部分的激发能量,因此可以观察到供体荧光。在水解酶切割保护基团后,荧光素部分在香豆素发射区域表现出强烈吸收,然后观察到由于FRET产生的受体荧光。基于此机制,我们开发了用于蛋白质酪氨酸磷酸酶(PTP)活性的新型比率荧光探针(1-3)。它们与PTP反应后发射波长发生很大变化。通过使用香豆素-环己烷-荧光素FRET盒部分克服了FRET探针通常出现的荧光猝灭问题,其中两种染料的紧密接触受到阻碍。在研究了它们的化学和动力学性质后,我们得出结论,带有刚性环己烷连接基团的化合物1和2对于PTP活性的比率测量实际上是有用的。本文所述的设计概念,即通过光谱重叠积分进行FRET切换以及防止两种染料紧密接触的刚性连接,通过在荧光素受体中引入其他合适的酶可切割基团,也应适用于其他水解酶。

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