Namkung Wan, Padmawar Prashant, Mills Aaron D, Verkman A S
Department of Medicine, University of California, San Francisco, California 94143-0521, USA.
J Am Chem Soc. 2008 Jun 25;130(25):7794-5. doi: 10.1021/ja8014499. Epub 2008 May 31.
K+ channels and K+-coupled membrane transporters are important targets for drug discovery. We previously developed a triazacryptand (TAC)-based K+ sensor, TAC-Red, and demonstrated its utility to image K+ waves in mouse brain in vivo (Padmawar et al. Nat. Methods. 2005, 2, 825-827). Here, we synthesized a green-fluorescing dextran conjugate of TAC-bodipy ("TAC-Limedex") for use as an extracellular K+ sensor and demonstrated its utility in measuring K+ transport across cell membranes. TAC-Limedex fluorescence increased by 50% with increasing [K+] from 0 to 2 mM and was insensitive to [Na+], [Cl-], or pH. K+ efflux from cells was quantified from increasing extracellular TAC-Limedex fluorescence following cell immersion in K+-free buffer. In HT-29 cells, K+ efflux was 2.0 +/- 0.1 micromol/cm2/s, increasing 8-fold following K+ channel activation by ATP; the increase in K+ efflux was inhibited by a K+ channel blocker or by preventing cytoplasmic calcium elevation. Electroneutral K+/Cl- cotransport was demonstrated in SiHa cells, in which K+ efflux was increased 3-fold by hypotonic challenge; the increase in K+ efflux was fully inhibited by a K+/Cl- transport blocker. K+ efflux measurements were adapted to a commercial fluorescence platereader for automated screening. The fluorescence-based K+ transport assay largely replaces assays requiring radioactive rubidium and is suitable for high-throughput identification of K+ transport modulators.
钾离子通道和钾离子偶联膜转运体是药物研发的重要靶点。我们之前开发了一种基于三氮杂环番(TAC)的钾离子传感器TAC-Red,并证明了其在体内对小鼠大脑中钾离子波进行成像的效用(Padmawar等人,《自然方法》,2005年,第2卷,第825 - 827页)。在此,我们合成了一种TAC-硼二吡咯(“TAC-Limedex”)的绿色荧光葡聚糖缀合物,用作细胞外钾离子传感器,并证明了其在测量钾离子跨细胞膜转运方面的效用。随着钾离子浓度从0增加到2 mM,TAC-Limedex荧光增强了50%,并且对钠离子、氯离子或pH不敏感。细胞浸入无钾缓冲液后,通过细胞外TAC-Limedex荧光增强来定量细胞的钾离子外流。在HT-29细胞中,钾离子外流为2.0±0.1微摩尔/平方厘米/秒,在ATP激活钾离子通道后增加了8倍;钾离子外流的增加被钾离子通道阻滞剂或通过阻止细胞质钙升高所抑制。在SiHa细胞中证明了电中性钾离子/氯离子共转运,其中低渗刺激使钾离子外流增加了3倍;钾离子外流的增加被钾离子/氯离子转运阻滞剂完全抑制。钾离子外流测量适用于商用荧光酶标仪以进行自动筛选。基于荧光的钾离子转运测定法在很大程度上取代了需要放射性铷的测定法,适用于高通量鉴定钾离子转运调节剂。