Craig D B, Dovichi N J
Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2, Canada.
Anal Chem. 1998 Jul 1;70(13):2493-4. doi: 10.1021/ac970856v.
Fluorescent dyes are often used to label proteins before analysis by capillary electrophoresis. Fluorescent labeling produces spectacular improvements in sensitivity compared with UV absorbance detection of the native protein. However, labeling of the protein can lead to significant band broadening. This band broadening is interpreted as a result of multiple labeling of the protein, wherein one or more fluorescent molecules are bound to the protein. The heterogeneous reaction products, which are presumed to have different mobilities, generate a broad peak during electrophoresis. There has been little direct evidence for multiple labeling as the cause of band broadening of proteins. In this paper, we perform electrophoresis on native green fluorescence protein, along with the reaction products produced by fluorescence labeling. For short incubations, a series of regularly spaced components are resolved by free-zone electrophoresis; upon longer incubation, the product peaks merge together, forming a broad envelope.
在通过毛细管电泳进行分析之前,荧光染料常被用于标记蛋白质。与天然蛋白质的紫外吸收检测相比,荧光标记在灵敏度方面有显著提高。然而,蛋白质的标记会导致明显的谱带展宽。这种谱带展宽被解释为蛋白质多重标记的结果,即一个或多个荧光分子与蛋白质结合。据推测具有不同迁移率的异质反应产物在电泳过程中产生一个宽峰。几乎没有直接证据表明多重标记是蛋白质谱带展宽的原因。在本文中,我们对天然绿色荧光蛋白以及荧光标记产生的反应产物进行电泳。对于短时间孵育,通过自由区电泳可分辨出一系列规则间隔的组分;孵育时间延长后,产物峰合并在一起,形成一个宽包络峰。