Fiala Gina J, Schamel Wolfgang W A, Blumenthal Britta
Spemann Graduate School of Biology and Medicine, University of Freiburg.
J Vis Exp. 2011 Feb 24(48):2164. doi: 10.3791/2164.
Multiprotein complexes (MPCs) play a crucial role in cell signalling, since most proteins can be found in functional or regulatory complexes with other proteins (Sali, Glaeser et al. 2003). Thus, the study of protein-protein interaction networks requires the detailed characterization of MPCs to gain an integrative understanding of protein function and regulation. For identification and analysis, MPCs must be separated under native conditions. In this video, we describe the analysis of MPCs by blue native polyacrylamide gel electrophoresis (BN-PAGE). BN-PAGE is a technique that allows separation of MPCs in a native conformation with a higher resolution than offered by gel filtration or sucrose density ultracentrifugation, and is therefore useful to determine MPC size, composition, and relative abundance (Schägger and von Jagow 1991); (Schägger, Cramer et al. 1994). By this method, proteins are separated according to their hydrodynamic size and shape in a polyacrylamide matrix. Here, we demonstrate the analysis of MPCs of total cellular lysates, pointing out that lysate dialysis is the crucial step to make BN-PAGE applicable to these biological samples. Using a combination of first dimension BN- and second dimension SDS-PAGE, we show that MPCs separated by BN-PAGE can be further subdivided into their individual constituents by SDS-PAGE. Visualization of the MPC components upon gel separation is performed by standard immunoblotting. As an example for MPC analysis by BN-PAGE, we chose the well-characterized eukaryotic 19S, 20S, and 26S proteasomes.
多蛋白复合物(MPCs)在细胞信号传导中起着至关重要的作用,因为大多数蛋白质都可以在与其他蛋白质形成的功能或调节复合物中找到(萨利、格莱泽等人,2003年)。因此,研究蛋白质-蛋白质相互作用网络需要对多蛋白复合物进行详细表征,以便全面了解蛋白质的功能和调节。为了进行鉴定和分析,必须在天然条件下分离多蛋白复合物。在本视频中,我们描述了通过蓝色天然聚丙烯酰胺凝胶电泳(BN-PAGE)对多蛋白复合物进行分析。BN-PAGE是一种能够以比凝胶过滤或蔗糖密度超速离心更高的分辨率分离天然构象多蛋白复合物的技术,因此可用于确定多蛋白复合物的大小、组成和相对丰度(沙格和冯·雅戈,1991年);(沙格、克拉默等人,1994年)。通过这种方法,蛋白质在聚丙烯酰胺基质中根据其流体动力学大小和形状进行分离。在这里,我们展示了对总细胞裂解物中多蛋白复合物的分析,指出裂解物透析是使BN-PAGE适用于这些生物样品的关键步骤。使用一维BN-PAGE和二维SDS-PAGE相结合的方法,我们表明通过BN-PAGE分离的多蛋白复合物可以通过SDS-PAGE进一步细分为其各个组成部分。凝胶分离后多蛋白复合物成分的可视化通过标准免疫印迹法进行。作为通过BN-PAGE分析多蛋白复合物的一个例子,我们选择了特征明确的真核生物19S、20S和26S蛋白酶体。