Kamoto Mie, Umezawa Naoki, Kato Nobuki, Higuchi Tsunehiko
Graduate School of Pharmaceutical Sciences, Nagoya City University, 3-1, Tanabe-dori, Mizuho-ku, Nagoya, Japan.
Chemistry. 2008;14(26):8004-12. doi: 10.1002/chem.200701896.
The introduction of hexahistidine (His tag) is widely used as a tool for affinity purification of recombinant proteins, since the His tag binds selectively to nickel-nitrilotriacetic acid (Ni2+-NTA) complex. To develop efficient "turn-on" fluorescent probes for His-tagged proteins, we adopted a fluorophore displacement strategy, that is, we designed probes in which a hydroxycoumarin fluorophore is joined via a linker to a metal-NTA moiety, with which it forms a weak intramolecular complex, thereby quenching the fluorescence. In the presence of a His tag, with which the metal-NTA moiety binds strongly, the fluorophore is displaced, which results in a dramatic enhancement of fluorescence. We synthesized a series of hydroxycoumarins that were modified by various linkers with NTA (NTAC ligands), and investigated the chemical and photophysical properties of the free ligands and their metal complexes. From the viewpoint of fluorescence quenching, Ni2+ and Co2+ were the best metals. Fluorescence spectroscopy revealed a 1:1 binding stoichiometry for the Ni2+ and Co2+ complexes of NTACs in pH 7.4 aqueous buffer. As anticipated, these complexes showed weak intrinsic fluorescence, but addition of a His-tagged peptide (H-(His)6-Tyr-NH2; Tyr was included to allow convenient concentration measurement) in pH 7.4 aqueous buffer resulted in up to a 22-fold increase in the fluorescence quantum yield. We found that the Co2+ complexes showed superior properties. No fluorescence enhancement was seen in the presence of angiotensin I, which contains two nonadjacent histidine residues; this suggests that the probes are selective for the polyhistidine peptide.
六组氨酸(His标签)的引入作为重组蛋白亲和纯化的工具被广泛应用,因为His标签能选择性地与镍-次氮基三乙酸(Ni2+-NTA)复合物结合。为了开发用于His标签蛋白的高效“开启”荧光探针,我们采用了荧光团置换策略,即设计一种探针,其中羟基香豆素荧光团通过连接子与金属-NTA部分相连,二者形成弱分子内复合物,从而淬灭荧光。在存在His标签时,金属-NTA部分与之强烈结合,荧光团被置换,导致荧光显著增强。我们合成了一系列经各种连接子修饰的带有NTA的羟基香豆素(NTAC配体),并研究了游离配体及其金属配合物的化学和光物理性质。从荧光淬灭的角度来看,Ni2+和Co2+是最佳金属。荧光光谱显示在pH 7.4的水性缓冲液中,NTACs的Ni2+和Co2+配合物的结合化学计量比为1:1。正如预期的那样,这些配合物显示出较弱的固有荧光,但在pH 7.4的水性缓冲液中加入His标签肽(H-(His)6-Tyr-NH2;包含Tyr以便于方便地测量浓度)会导致荧光量子产率提高多达22倍。我们发现Co2+配合物表现出更优异的性能。在含有两个不相邻组氨酸残基的血管紧张素I存在下未观察到荧光增强;这表明该探针对多组氨酸肽具有选择性。