Pasquali Matias, Serchi Tommaso, Planchon Sebastien, Renaut Jenny
Luxembourg Institute of Science and Technology, 41 Rue du Brill, Belvaux, Luxembourg.
DEFENS, University of Milan, Via Celoria 2, Milan, Italy.
Methods Mol Biol. 2017;1654:245-254. doi: 10.1007/978-1-4939-7231-9_17.
The two-dimensional difference gel electrophoresis method is a valuable approach for proteomics. The method, using cyanine fluorescent dyes, allows the co-migration of multiple protein samples in the same gel and their simultaneous detection, thus reducing experimental and analytical time. 2D-DIGE, compared to traditional post-staining 2D-PAGE protocols (e.g., colloidal Coomassie or silver nitrate), provides faster and more reliable gel matching, limiting the impact of gel to gel variation, and allows also a good dynamic range for quantitative comparisons. By the use of internal standards, it is possible to normalize for experimental variations in spot intensities and gel patterns. Here we describe the experimental steps we follow in our routine 2D-DIGE procedure that we then apply to multiple biological questions.
二维差异凝胶电泳方法是蛋白质组学中的一种重要方法。该方法使用菁类荧光染料,可使多个蛋白质样品在同一凝胶中共迁移并同时进行检测,从而减少实验和分析时间。与传统的染色后二维聚丙烯酰胺凝胶电泳方法(如考马斯亮蓝胶体染色或硝酸银染色)相比,二维差异凝胶电泳能提供更快且更可靠的凝胶匹配,减少凝胶间差异的影响,还能为定量比较提供良好的动态范围。通过使用内标,可以对斑点强度和凝胶图谱的实验变化进行标准化。在此,我们描述了在常规二维差异凝胶电泳实验过程中遵循的实验步骤,随后将其应用于多个生物学问题。