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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >An improved measurement of the Ca2+ -binding affinity of fluorescent Ca2+ indicators
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An improved measurement of the Ca2+ -binding affinity of fluorescent Ca2+ indicators

机译:改进荧光Ca2 +指示剂的Ca2 + - 粘接亲和力的测量

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Fluorescent Ca2+ indicators are widely used to measure the intracellular Ca2+ concentration ([Ca2+](i)) in living cells, including neurons. By calibrating an indicator in solutions that mimic the main ionic constituents of the actual cytoplasm, [Ca2+] i can be determined from the measured fluorescence intensity. However, different studies have reported considerably different Ca2+-binding affinities (K-d) for the same indicator, even though they used calibrating solutions with similar compositions. In this paper, we present a method to accurately determine the Kd values of non-ratiometric Ca2+ indicators in solutions that mimicked a standard patch-clamp internal solution. The free Ca2+ concentration ([Ca2+]) in these solutions, which was set by either EGTA or HEDTA, was measured with a Ca2+-selective macroelectrode. We found that such a measurement was critical for an accurate calibration of the Ca2+ indicators. The Kd values of OGB-1, OGB-6F, fluo-5F, and fluo-4FF were 0.26 +/- 0.01, 8.7 +/- 0.4, 1.00 +/- 0.05, and 23.0 +/- 0.7 mu M, respectively. Calculating [Ca2+] with Maxchelator, a widely used computer program, led to a significant underestimation of the K-d values of OGB-6F, fluo-5F, and fluo-4FF. This is because the purity of EGTA was considerably less than that advertised by the manufacturer. In addition, the K-d value of HEDTA was overestimated by Maxchelator. Therefore, besides batch-to-batch variations, the fact that [Ca2+] in the calibrating solutions of many studies was estimated with Maxchelator is very likely a reason for the different published values of K-d of Ca2+ indicators. Using a reaction-diffusion model to reproduce Ca2+ rises in a nerve terminal, we further showed that incorrect calibration of fluorescent Ca2+ indicators can underlie the large variation of the endogenous Ca2+ binding ratio between different types of excitatory synapses.
机译:荧光Ca2 +指示剂广泛用于测量活细胞中的细胞内Ca2 +浓度([Ca2 +](I)),包括神经元。通过校准模拟实际细胞质的主要离子成分的溶液中的指示,可以根据测量的荧光强度确定[Ca2 +] i。然而,对于相同的指标,不同的研究报告了相当不同的Ca2 + - 粘接亲和力(K-D),即使它们使用校准溶液具有类似的组合物。在本文中,我们介绍了一种准确地确定模拟标准贴片内部解决方案的溶液中的非比率CA2 +指示器KD值的方法。通过EGTA或HEDTA设定的这些溶液中的游离CA2 +浓度([Ca2 +])用Ca2 + - 选择性宏观测量。我们发现这种测量对于CA2 +指示器的精确校准至关重要。 OGB-1,OGB-6F,FLUO-5F和FLUO-4FF的KD值分别为0.26 +/- 0.01,8.7 +/- 0.4,1.00 +/- 0.05和23.0 +/- 0.7 mu m。使用MAXCHELATOR计算[CA2 +],广泛使用的计算机程序导致OGB-6F,FLUO-5F和FLUO-4FF的K-D值的显着低估。这是因为EGTA的纯度远低于制造商宣传的纯度。此外,HEDTA的K-D值由MAXCHELOR器高估。因此,除了批量批量变化之外,估计许多研究的校准解决方案中的事实是用MaxChelator估计的可能性是Ca2 +指标的不同公布值的原因。使用反应扩散模型以在神经末端再现Ca2 +上升,我们进一步表明荧光Ca2 +指示剂的校准不正确会使不同类型的兴奋性突触之间的内源Ca2 +结合比的大变化。

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