Carrano A V, Lamerdin J, Ashworth L K, Watkins B, Branscomb E, Slezak T, Raff M, de Jong P J, Keith D, McBride L
Biomedical Sciences Division, Lawrence Livermore National Laboratory, California 94550.
Genomics. 1989 Feb;4(2):129-36. doi: 10.1016/0888-7543(89)90291-7.
We describe a fluorescence-based method for the automated analysis of DNA fragments on polyacrylamide gels. A single-stranded oligonucleotide primer (18-mer) with a fluorochrome covalently bound to its 5'-end is annealed to a synthetic oligonucleotide to create a double-stranded oligonucleotide linker with a 5'-overhang complementary to a restriction enzyme site. Cosmid or plasmid DNA is digested with the appropriate restriction enzyme and then ligated to the fluorochrome-labeled linker. The labeled restriction fragments are loaded on a denaturing polyacrylamide gel in a commercially available DNA sequencer. As the restriction fragments migrate through the gel, they intersect a laser beam which excites the fluorochrome-labeled fragment. Fluorescence emission data are captured on a computer in real time and analyzed after the completion of electrophoresis. Fragment length is nearly linearly related to migration time. This method offers very near single-base resolution up to 400 bases and the ability to quantitate fragment size up to 2000 bases. The fluorochrome-labeling chemistry relies on straightforward enzymatic reactions and can be performed in a single reaction tube. Because four different fluorochromes can be used, each of 16 lanes on the gel can be used to analyze four different digest reactions, one in each color. One of the fluorochromes can be used to label size standards in each lane, eliminating interlane variability and allowing more precise estimates of fragment size. We apply the method to the analysis of overlapping cosmids.
我们描述了一种基于荧光的方法,用于自动分析聚丙烯酰胺凝胶上的DNA片段。一个5'-端共价连接有荧光染料的单链寡核苷酸引物(18聚体)与一个合成寡核苷酸退火,形成一个双链寡核苷酸接头,其5'-突出端与一个限制性酶切位点互补。黏粒或质粒DNA用适当的限制性酶消化,然后与荧光染料标记的接头连接。标记的限制性片段加载到市售DNA测序仪中的变性聚丙烯酰胺凝胶上。当限制性片段在凝胶中迁移时,它们与激发荧光染料标记片段的激光束相交。荧光发射数据实时采集到计算机上,并在电泳完成后进行分析。片段长度与迁移时间几乎呈线性关系。该方法在400个碱基范围内提供非常接近单碱基的分辨率,并且能够对长达2000个碱基的片段大小进行定量。荧光染料标记化学依赖于简单的酶促反应,并且可以在单个反应管中进行。由于可以使用四种不同的荧光染料,凝胶上的16个泳道中的每一个都可以用于分析四种不同的消化反应,每种颜色一种。其中一种荧光染料可用于标记每个泳道中的大小标准品,消除泳道间的变异性,并更精确地估计片段大小。我们将该方法应用于重叠黏粒的分析。