Boland E J, Pillai A, Odom M W, Jagadeeswaran P
University of Texas Health Science Center at San Antonio 78284-7762.
Biotechniques. 1994 Jun;16(6):1088-92, 1094-5.
A practical automated method of Maxam-Gilbert chemical sequencing reactions that uses solid-phase chromatography methods to purify DNA following chemical modification and cleavage is described in this report. The automation has primarily been made possible by using specially designed BioPak mini-columns, compatible with the Biomek 1000 automated workstation, which can be utilized in a manner similar to that of standard pipet tips. This automated chromatographic sequencing method produces rapid and reliable data as verified by sequencing a known human factor IX exon VIII gene fragment. The procedure presented in this report is a prototype for a single-fragment reaction and can easily be expanded to perform reactions on as many as 8 fragments at a time. The automation eliminates the tedious and time-consuming steps in the original method and increases the rate of sequence acquisition. This technology makes the Maxam-Gilbert chemical sequencing protocol more accessible, especially in large-scale, automated sequencing projects.
本报告介绍了一种实用的Maxam-Gilbert化学测序反应自动化方法,该方法在化学修饰和切割后使用固相色谱法纯化DNA。自动化主要通过使用专门设计的BioPak微型柱实现,该微型柱与Biomek 1000自动化工作站兼容,其使用方式类似于标准移液器吸头。通过对已知的人类凝血因子IX外显子VIII基因片段进行测序验证,这种自动化色谱测序方法可产生快速可靠的数据。本报告中介绍的程序是单片段反应的原型,并且可以轻松扩展为一次对多达8个片段进行反应。自动化消除了原始方法中繁琐且耗时的步骤,并提高了序列获取的速度。这项技术使Maxam-Gilbert化学测序方案更易于使用,特别是在大规模自动化测序项目中。