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High sensitivity analysis of water-soluble, cyanine dye labeled proteins by high-performance liquid chromatography with fluorescence detection

机译:高效液相色谱-荧光检测对水溶性花青染料标记的蛋白质进行高灵敏度分析

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摘要

A water-soluble sulfo-3H-indocyanine dye, the active N-hydroxysuccinimide ester of 3H-In-dolium,1-[(4-carboxyphenyl)methyl]-2-[3-[1-[(4-carboxyphenyl)methyl]-13-dihydro-33-dimethyl-5-sulfo-2H-indol-2-ylidene]-1-propenyl]-3,3-dimethyl-5-sulfo-(9Cl) (sb-cy3-NHS), containing two p-carboxybenzyl groups on nitrogen atoms, previously developed by our laboratory, was for the first time used for protein derivatization, followed by HPLC separation and fluorescence detection. With bovine serum albumin (BSA) as a model protein, effects of various experimental conditions, including denaturant concentration, reaction time and temperature, the pH value of buffer, and the molar ratio of fluorescence reagent to protein, on protein derivatization efficiency were systematically investigated. Under the optimal conditions, the limit of detection (LOD) for derivatized BSA was decreased to 12.8 nM, about 100-fold lower than that by UV and fluorescence detection with commercial fluorescein isothiocyanate (FITC) as labeling reagent. For HPLC analysis, an on-column excess fluorescence reagent depletion technique was developed based on the hydrophilicity of sb-cy3-NHS, which could avoid the interference on the analysis of target compounds. In addition, sb-cy3-NHS was applied for the derivatization of a three-protein mixture and egg white proteins. Compared to the results labeled by FITC, more proteins with low concentrations could be labeled by sb-cy3-NHS, resulting in improved detection sensitivity for protein analysis. All these results demonstrated that sb-cy3-NHS might be promising in detecting low abundance proteins, especially in the quantitative analysis of proteins.
机译:水溶性磺基3H-吲哚菁染料,3H-In-dol,1-[(4-羧基苯基)甲基] -2- [3- [1-[(4-羧基苯基)甲基]的活性N-羟基琥珀酰亚胺酯] -13-二氢-33-二甲基-5-磺基-2H-吲哚-2-亚烷基] -1-丙烯基] -3,3-二甲基-5-磺基-(9Cl)(sb-cy3-NHS),我们实验室先前开发的氮原子上的两个对羧基苄基首次用于蛋白质衍生化,然后进行HPLC分离和荧光检测。以牛血清白蛋白(BSA)为模型蛋白,系统研究了变性剂浓度,反应时间和温度,缓冲液的pH值以及荧光剂与蛋白质的摩尔比等各种实验条件对蛋白质衍生化效率的影响。 。在最佳条件下,衍生化BSA的检出限(LOD)降低至12.8 nM,比使用市售异硫氰酸荧光素(FITC)作为标记试剂的UV和荧光检测法降低了约100倍。对于HPLC分析,基于sb-cy3-NHS的亲水性,开发了一种柱上过量荧光试剂消耗技术,该技术可以避免干扰目标化合物的分析。另外,将sb-cy3-NHS应用于三蛋白混合物和蛋清蛋白的衍生化。与FITC标记的结果相比,sb-cy3-NHS可以标记更多低浓度的蛋白质,从而提高了蛋白质分析的检测灵敏度。所有这些结果表明,sb-cy3-NHS在检测低丰度蛋白质中,特别是在蛋白质的定量分析中可能很有希望。

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