Zsolnai A, Orbán L, Chrambach A
Institute for Molecular Genetics, Agricultural Biotechnology Center, Gödöllö, Hungary.
Electrophoresis. 1993 Mar;14(3):179-84. doi: 10.1002/elps.1150140130.
Using a horizontal slab apparatus with a buffer in the reservoirs at the level of the gel ("sea-level electrophoresis"), the retrograde discontinuous buffer system reported by Wiltfang et al. for sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) of proteins was applied to DNA electrophoresis. This application yielded the advantages of an increased displacement rate of the moving boundary front and a decrease in the concentration of the counterion base in the resolving phase, which yielded reduced relative mobility values at equivalent gel concentrations and practicable low buffer concentrations. The change of relative mobilities (Rf) with a variation of field strength is decreased compared to that of the migration rate in the continuous Tris-boric-acid-EDTA (TBE) buffer and thus the robustness of the system is improved, as well as the efficiency of separation. The system of Wiltfang et al. has in common with previously described discontinuous DNA system, that it is able to stack DNA from dilute samples and is insensitive to sample components with lower net mobilities than DNA, such as acetate. However, the variance of Rf at constant current density in the discontinuous buffer system is not improved over that of the migration rate at constant field strength in the continuous TBE buffer.
使用一种水平平板装置,在凝胶水平的储液器中加入缓冲液(“海平面电泳”),将Wiltfang等人报道的用于蛋白质十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)的逆向不连续缓冲系统应用于DNA电泳。这种应用具有移动边界前沿位移速率增加以及分辨相中抗衡离子碱浓度降低的优点,这在等效凝胶浓度下产生了降低的相对迁移率值,并实现了可行的低缓冲液浓度。与在连续的Tris - 硼酸 - EDTA(TBE)缓冲液中的迁移速率相比,相对迁移率(Rf)随场强变化的变化减小,因此系统的稳健性以及分离效率都得到了提高。Wiltfang等人的系统与先前描述的不连续DNA系统的共同之处在于,它能够从稀释样品中堆积DNA,并且对净迁移率低于DNA的样品成分(如乙酸盐)不敏感。然而,不连续缓冲系统中在恒定电流密度下Rf的方差并没有比连续TBE缓冲液中在恒定场强下的迁移速率的方差有所改善。