Klepárnik K, Foret F, Berka J, Goetzinger W, Miller A W, Karger B L
Institute of Analytical Chemistry, Brno, Czech Republic.
Electrophoresis. 1996 Dec;17(12):1860-6. doi: 10.1002/elps.1150171210.
Capillary electrophoresis with a replaceable linear polyacrylamide matrix operated at elevated column temperatures of 55 degrees and 60 degrees C was used to extend the separation of DNA sequencing fragments to lengths greater than 800 bases. A solid-state heater was employed to provide stable, uniform temperature control over a significant portion of the capillary. The polymer matrix, 3% w/v linear polyacrylamide in a denaturing buffer, was replaced in the capillary after each run. Using dye-labeled primers and Sequenase chemistry on an M13mp18 single-stranded template, four-color separations for the sequencing products were obtained, with read lengths in excess of 800 bases. This paper also briefly discusses the effects of buffer denaturants and capillary temperature on separation speed, resolution, and gel compression.
采用可更换线性聚丙烯酰胺基质的毛细管电泳,在55摄氏度和60摄氏度的升高柱温下操作,以将DNA测序片段的分离长度扩展至大于800个碱基。使用固态加热器在毛细管的大部分区域提供稳定、均匀的温度控制。每次运行后在毛细管中更换聚合物基质,其为变性缓冲液中3% w/v的线性聚丙烯酰胺。在M13mp18单链模板上使用染料标记引物和Sequenase化学方法,获得了测序产物的四色分离,读长超过800个碱基。本文还简要讨论了缓冲液变性剂和毛细管温度对分离速度、分辨率和凝胶压缩的影响。