Olesen C E, Martin C S, Bronstein I
Tropix, Bedford, MA 01730.
Biotechniques. 1993 Sep;15(3):480-5.
Chemiluminescent detection techniques provide a sensitive, nonradioactive method for DNA sequencing. Standard Sanger dideoxy DNA sequencing reactions are initiated with biotinylated primers, separated by gel electrophoresis, transferred to nylon membrane and detected utilizing chemiluminescent 1,2-dioxetane substrates for alkaline phosphatase. A multiplex-labeling method was developed to permit detection of several overlapping sets of DNA sequence information on a single membrane, thereby increasing the productivity of a single gel electrophoretic separation. Primers labeled with different haptens at the 5' end were used to perform separate sequencing reactions. These were mixed together prior to electrophoresis, and the individual sequencing products sequentially detected using hapten-specific reagents. We incorporated primers labeled with biotin, digoxigenin, 2,4-dinitrophenyl or fluorescein, each consecutively detected with a hapten-specific alkaline phosphatase conjugate and CSPD 1,2-dioxetane chemiluminescent substrate. To further increase the amount of DNA sequence data that can be obtained from a single membrane, a direct transfer electrophoresis apparatus was used for simultaneous separation of the DNA sequencing reactions and membrane transfer. The resulting increased separation of the high molecular weight fragments yields 350-450 bp of readable DNA sequence data from each template. Chemiluminescent detection of overlapping sets of DNA sequencing reactions utilizing multiplex labeling, combined with direct transfer electrophoresis, provides an efficient, nonradioactive method for DNA sequencing.
化学发光检测技术为DNA测序提供了一种灵敏的非放射性方法。标准的桑格双脱氧DNA测序反应以生物素化引物起始,通过凝胶电泳分离,转移到尼龙膜上,并利用碱性磷酸酶的化学发光1,2 - 二氧杂环丁烷底物进行检测。开发了一种多重标记方法,以允许在单个膜上检测几组重叠的DNA序列信息,从而提高单次凝胶电泳分离的效率。在5'端用不同半抗原标记的引物用于进行单独的测序反应。在电泳前将它们混合在一起,并使用半抗原特异性试剂依次检测各个测序产物。我们采用了用生物素、地高辛、2,4 - 二硝基苯基或荧光素标记的引物,每种引物依次用半抗原特异性碱性磷酸酶偶联物和CSPD 1,2 - 二氧杂环丁烷化学发光底物进行检测。为了进一步增加从单个膜上可获得的DNA序列数据量,使用了直接转移电泳装置同时分离DNA测序反应并进行膜转移。由此增加的高分子量片段的分离度使得从每个模板可获得350 - 450 bp的可读DNA序列数据。利用多重标记对重叠的DNA测序反应进行化学发光检测,并结合直接转移电泳,为DNA测序提供了一种高效的非放射性方法。