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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Noncovalent labeling of myoglobin for capillary electrophoresis with laser-induced fluorescence detection by reconstitution with a fluorescent porphyrin.
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Noncovalent labeling of myoglobin for capillary electrophoresis with laser-induced fluorescence detection by reconstitution with a fluorescent porphyrin.

机译:肌红蛋白的非共价标记,用于毛细管电泳,通过用荧光卟啉重构激光诱导的荧光检测。

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摘要

Traditional protein labeling reactions for capillary electrophoresis (CE) with laser-induced fluorescence (LIF) detection suffer from a variety of disadvantages. The reactions can be nonquantitative on a reasonable time scale, require relatively high concentrations of protein and fluorophore, and can give multiple reaction products that can not be separated. Herein, we describe a new noncovalent labeling technique that is rapid, selective for myoglobin, and gives a simple reaction product. Myoglobin is denatured with either 5.4 M urea or low pH (2.0). The denatured myoglobin releases its nonfluorescent heme group. A fluorescent porphyrin (protoporphyrin IX (PPIX) or its zinc (II) complex, Zn-PPIX), is added to the mixture and the solution conditions are altered (dilute to 0.54 M urea or adjust pH to 7.0) to allow myoglobin refolding. Upon refolding, the protein incorporates PPIX from solution, thus making the reaction product fluorescent. The experimental conditions have been optimized for both urea and low-pH denaturation of myoglobin. The latter procedure produces a detection limit of 50 nM. Alternatively, the reaction can be performed without denaturation by a simple exchange of the porphyrins. The use of Zn-PPIX yields the most efficient reaction. The low-pH reaction is unaffected by a 2000-fold excess of bovine serum albumin.
机译:传统的用于毛细管电泳(CE)和激光诱导荧光(LIF)检测的蛋白质标记反应具有许多缺点。在合理的时间范围内,反应可以是非定量的,需要相对较高浓度的蛋白质和荧光团,并且可以提供无法分离的多种反应产物。在这里,我们描述了一种新的非共价标记技术,该技术快速,对肌红蛋白具有选择性,并给出了简单的反应产物。肌红蛋白用5.4 M尿素或低pH(2.0)变性。变性的肌红蛋白释放其非荧光血红素基团。将荧光卟啉(原卟啉IX(PPIX)或其锌(II)络合物Zn-PPIX)添加到混合物中,并更改溶液条件(稀释至0.54 M尿素或将pH调整至7.0)以使肌红蛋白重新折叠。重新折叠后,蛋白质会从溶液中掺入PPIX,从而使反应产物发荧光。实验条件已针对尿素和肌红蛋白的低pH变性进行了优化。后一程序产生的检测极限为50 nM。或者,可通过简单交换卟啉而使反应不变性而进行。 Zn-PPIX的使用产生最有效的反应。低pH反应不受2000倍牛血清白蛋白影响。

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