Farruggia Giovanna, Iotti Stefano, Prodi Luca, Montalti Marco, Zaccheroni Nelsi, Savage Paul B, Trapani Valentina, Sale Patrizio, Wolf Federica I
Dipartimento di Biochimica G. Moruzzi, Via Irnerio 48, Università degli Studi di Bologna, 40126 Bologna, Italy.
J Am Chem Soc. 2006 Jan 11;128(1):344-50. doi: 10.1021/ja056523u.
Despite the key role of magnesium in many fundamental biological processes, knowledge about its intracellular regulation is still scarce, due to the lack of appropriate detection methods. Here, we report the spectroscopic and photochemical characterization of two diaza-18-crown-6 hydroxyquinoline derivatives (DCHQ) and we propose their application in total Mg(2+) assessment and in confocal imaging as effective Mg(2+) indicators. DCHQ derivatives 1 and 2 bind Mg(2+) with much higher affinity than other available probes (K(d) = 44 and 73 microM, respectively) and show a strong fluorescence increase upon binding. Remarkably, fluorescence output is not significantly affected by other divalent cations, most importantly Ca(2+), or by pH changes within the physiological range. Evidence is provided on the use of fluorometric data to derive total cellular Mg(2+) content, which is consistent with atomic absorption data. Furthermore, we show that DCHQ compounds can be effectively employed to map intracellular ion distribution and movements in live cells by confocal microscopy. A clear staining pattern consistent with known affinities of Mg(2+) for biological ligands is shown; moreover, changes in the fluorescence signal could be tracked following stimuli known to modify intracellular Mg(2+) concentration. These findings suggest that DCHQ derivatives may serve as new tools for the study of Mg(2+) regulation, allowing sensitive and straightforward detection of both static and dynamic signals.
尽管镁在许多基本生物过程中起着关键作用,但由于缺乏合适的检测方法,关于其细胞内调节的知识仍然匮乏。在此,我们报告了两种二氮杂-18-冠-6羟基喹啉衍生物(DCHQ)的光谱和光化学特性,并提出它们可作为有效的镁离子指示剂应用于总镁离子评估和共聚焦成像。DCHQ衍生物1和2与镁离子结合的亲和力比其他现有探针高得多(解离常数分别为44和73微摩尔),并且结合后荧光显著增强。值得注意的是,荧光输出不受其他二价阳离子(最重要的是钙离子)或生理范围内pH变化的显著影响。利用荧光数据推导细胞总镁离子含量的证据得到了提供,这与原子吸收数据一致。此外,我们表明DCHQ化合物可通过共聚焦显微镜有效地用于绘制活细胞内离子分布和运动情况。显示出与镁离子对生物配体已知亲和力一致的清晰染色模式;此外,在已知会改变细胞内镁离子浓度的刺激后,可以跟踪荧光信号的变化。这些发现表明DCHQ衍生物可能作为研究镁离子调节的新工具,允许对静态和动态信号进行灵敏且直接的检测。