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Double bands in DNA gel electrophoresis caused by bis-intercalating dyes

机译:双嵌入染料引起的DNA凝胶电泳中的双带

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Many bis-intercalating dyes used for fluorescence detection of DNA in electrophoresis have been reported to give band-splitting and band-broadening, which results in poor resolution and a decreased detection sensitivity. We have studied the dimeric dye YOYO-1, and to some extent also TOTO-1 and EthD-1, and found that in complex with DNA these dyes give rise to two components with different electrophoretic mobilities. Electrophoresis experiments and spectro-scopic measurements on the two components show that they differ in that the DNA molecules have different amounts of dye bound. Our results exclude that the extra bands are caused by intermolecular cross-linking. Incubation of the samples for increasing times before electrophoresis makes the bandsmove closer and closer to each other as the dye molecules become more homogeneously distributed among the DNA molecules. Finally, the two bands merge into one at an intermediate position. This equilibration process is extremely slow at room temperature (days), and is therefore not a practical method to eliminate band-splitting in routine analysis. However, we find that if the temperature is raised to 50° C, the dye-DNA complexes equilibrate completely in only 2 h.
机译:据报道,许多用于电泳中DNA荧光检测的双嵌入染料会产生谱带分裂和谱带展宽,导致分离度降低和检测灵敏度降低。我们已经研究了二聚体染料YOYO-1,并且在一定程度上还对TOTO-1和EthD-1进行了研究,发现与DNA结合时,这些染料会产生两种具有不同电泳迁移率的组分。两种成分的电泳实验和光谱测量表明,它们的不同之处在于DNA分子结合的染料量不同。我们的结果排除了多余的谱带是由分子间的交联引起的。随着染料分子在DNA分子之间变得更均匀地分布,电泳前样品的孵育时间增加,使谱带彼此越来越靠近。最后,两个频段在中间位置合并为一个。这种平衡过程在室温(天)下非常慢,因此不是消除常规分析中谱带分裂的实用方法。但是,我们发现,如果温度升至50°C,则染料-DNA复合物仅在2小时内即可完全平衡。

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