Stastná Miroslava, Slais Karel
Institute of Analytical Chemistry, Academy of Sciences of the Czech Republic, Brno, Czech Republic.
Electrophoresis. 2005 Sep;26(18):3586-91. doi: 10.1002/elps.200500264.
Two-dimensional gel isoelectric focusing (2-D gel IEF) is presented as the combination of the same separation method used consecutively in two directions of the same gel. In this new method, after completion of IEF process in the first dimension the gel was cut into the separate strips, each containing selected analytes together with the appropriate part of the original broad pH gradient, and the strips were rotated by 90 degrees (with regard to the first IEF) and left to diffuse overnight. After diffusion the strips were subjected to the second IEF. During the second IEF, the corresponding narrow part of pH gradient in each strip was restored again, however, now along the strip. The progress of the separation process can be monitored visually by using colored low-molecular-weight isoelectric point (pI) markers loaded into the gel simultaneously with proteins. The unique properties of IEF, focusing and resolution power were enhanced by using the same technique twice. Two forms of beta-lactoglobulin (pI values 5.14 and 5.31, respectively) non-separated in the first IEF were successfully separated in the second dimension at relatively low voltage (330 V) with the resolution power comparable to the high-resolution gels requiring the high voltage during the run and long separation time. Glucose oxidase loaded as diluted solution into ten positions across the gel was finally focused into a single band during 2-D gel IEF. Since the first and second IEF are carried out on the same gel, no losses and contamination of analyte occur. The suggested method can be used for separation/fractionation of complex biological mixtures, similarly as other multidimensional separation techniques applied in proteomics, and can be followed by further processing, e.g., mass spectrometry analysis. The focusing properties of IEF could be useful especially in separation of mixtures, where components are at low concentration levels.
二维凝胶等电聚焦(2-D凝胶IEF)是指在同一凝胶的两个方向上连续使用相同分离方法的组合。在这种新方法中,在第一维完成IEF过程后,将凝胶切成单独的条带,每个条带包含选定的分析物以及原始宽pH梯度的适当部分,然后将条带旋转90度(相对于第一次IEF)并放置过夜使其扩散。扩散后,将条带进行第二次IEF。在第二次IEF过程中,每个条带中pH梯度的相应窄部分再次恢复,不过这次是沿着条带恢复。分离过程的进展可以通过与蛋白质同时加载到凝胶中的有色低分子量等电点(pI)标记物进行可视化监测。通过两次使用相同技术,IEF的独特特性、聚焦和分辨率得到了增强。在第一次IEF中未分离的两种形式的β-乳球蛋白(pI值分别为5.14和5.31)在第二维中以相对较低的电压(330 V)成功分离,其分辨率与运行期间需要高电压和长分离时间的高分辨率凝胶相当。以稀释溶液形式加载到凝胶上十个位置的葡萄糖氧化酶最终在二维凝胶IEF过程中聚焦成一条带。由于第一次和第二次IEF在同一凝胶上进行,分析物不会发生损失和污染。所建议的方法可用于分离/分级复杂的生物混合物,与蛋白质组学中应用的其他多维分离技术类似,并且可以随后进行进一步处理,例如质谱分析。IEF的聚焦特性在分离低浓度水平成分的混合物时可能特别有用。