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用于DNA测序的M13模板的高通量纯化

High-throughput purification of M13 templates for DNA sequencing.

作者信息

Wilson R K

机构信息

Department of Genetics, Washington University School of Medicine, St. Louis, MO 63110.

出版信息

Biotechniques. 1993 Sep;15(3):414-6, 418-20, 422.

PMID:8217153
Abstract

Two variants of methods for high-throughput preparation of single-stranded M13 DNA are described. Both variants are derived from previously described chemistry and are appropriate for purification of M13 templates in 96-deep well plates. In both variants, phenol extraction is replaced by treatment with sodium iodide to disrupt phage proteins prior to ethanol precipitation of M13 DNA. In one of the variants, nonderivatized paramagnetic particles are employed to collect aggregated M13 phage particles and DNA, thereby replacing the need for centrifugation. The other variant omits the magnetic particles and utilizes a centrifuge that can accommodate the 96-deep well plates. Although the purification scheme that uses magnetic separation results in a decreased yield of M13 DNA, it is amenable to robotic automation strategies and thus will be useful for genomic sequencing projects. Performed manually, either method can easily produce 192 templates in a few hours. Although both variants produce DNA of sufficient quantity for automated fluorescent DNA sequencing, the procedure that utilizes magnetic separation provides template DNA of higher quality.

摘要

本文描述了两种用于高通量制备单链M13 DNA的方法变体。这两种变体均源自先前描述的化学方法,适用于在96孔深孔板中纯化M13模板。在这两种变体中,在对M13 DNA进行乙醇沉淀之前,用碘化钠处理以破坏噬菌体蛋白质,从而取代了酚抽提。在其中一种变体中,使用未衍生化的顺磁性颗粒来收集聚集的M13噬菌体颗粒和DNA,从而无需离心。另一种变体省略了磁性颗粒,而是使用可容纳96孔深孔板的离心机。尽管使用磁分离的纯化方案会导致M13 DNA产量降低,但它适用于机器人自动化策略,因此将对基因组测序项目有用。手动操作时,两种方法都可以在几个小时内轻松制备192个模板。尽管两种变体都能产生足够数量的DNA用于自动化荧光DNA测序,但利用磁分离的方法可提供更高质量的模板DNA。

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