Markova Olga, Mukhtarov Marat, Real Eleonore, Jacob Yves, Bregestovski Piotr
Institut de Neurobiologie de la Méditerranée (INMED), INSERM U901, Parc Scientifique de Luminy, Marseille, France.
J Neurosci Methods. 2008 May 15;170(1):67-76. doi: 10.1016/j.jneumeth.2007.12.016. Epub 2008 Jan 6.
Chloride (Cl) is the most abundant physiological anion. Abnormalities in Cl regulation are instrumental in the development of several important diseases including motor disorders and epilepsy. Because of difficulties in the spectroscopic measurement of Cl in live tissues there is little knowledge available regarding the mechanisms of regulation of intracellular Cl concentration. Several years ago, a CFP-YFP based ratiometric Cl indicator (Clomeleon) was introduced [Kuner, T., Augustine, G.J. A genetically encoded ratiometric indicator for chloride: capturing chloride transients in cultured hippocampal neurons. Neuron 2000; 27: 447-59]. This construct with relatively low sensitivity to Cl (K(app) approximately 160 mM) allows ratiometric monitoring of Cl using fluorescence emission ratio. Here, we propose a new CFP-YFP-based construct (Cl-sensor) with relatively high sensitivity to Cl (K(app) approximately 30 mM) due to triple YFP mutant. The construct also exhibits good pH sensitivity with pK(alpha) ranging from 7.1 to 8.0 pH units at different Cl concentrations. Using Cl-sensor we determined non-invasively the distribution of Cl in cultured CHO cells, in neurons of primary hippocampal cultures and in photoreceptors of rat retina. This genetically encoded indicator offers a means for monitoring Cl and pH under different physiological conditions and high-throughput screening of pharmacological agents.
氯离子(Cl)是最丰富的生理阴离子。Cl调节异常在包括运动障碍和癫痫在内的几种重要疾病的发展中起重要作用。由于在活组织中进行Cl的光谱测量存在困难,关于细胞内Cl浓度调节机制的知识很少。几年前,一种基于CFP-YFP的比率型Cl指示剂(Clomeleon)被引入[库纳,T.,奥古斯丁,G.J.一种用于氯离子的基因编码比率型指示剂:捕获培养的海马神经元中的氯离子瞬变。《神经元》2000年;27:447 - 59]。这种对Cl敏感性相对较低(K(app)约为160 mM)的构建体允许使用荧光发射比率对Cl进行比率监测。在此,我们提出一种基于CFP-YFP的新构建体(Cl-传感器),由于三重YFP突变体,其对Cl具有相对较高的敏感性(K(app)约为30 mM)。该构建体在不同Cl浓度下还表现出良好的pH敏感性,pK(α)范围为7.1至8.0个pH单位。使用Cl-传感器,我们非侵入性地测定了培养的CHO细胞、原代海马培养物的神经元和大鼠视网膜光感受器中[Cl](i)的分布。这种基因编码指示剂为在不同生理条件下监测Cl和pH以及高通量筛选药物制剂提供了一种手段。