Chowdhury E H, Akaike Toshihiro
Department of Biomolecular Engineering, Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, 4259 Nagatsuta-cho, Midori-ku, Yokohama 226-8501, Japan.
J Biotechnol. 2005 Oct 10;119(4):343-7. doi: 10.1016/j.jbiotec.2005.05.013.
Purification of plasmid DNA from bacteria is an essential tool in recombinant DNA technology and has become an essential task in laboratories to industries. Moreover, the recent progress of "Gene therapy" and "Genetic vaccination" also demands production of pharmaceutical grade plasmid DNA in 'kilogram' level. Despite existence of a number of purification protocols, all most all have been originated from a pioneering work [Birnboim, H.C., Doly, J., 1979. A rapid extraction procedure for screening recombinant plasmid DNA. Nucleic Acids Res. 7, 1513-1523] and so suffer from one or more drawbacks, such as purification time, purity or quantity of isolated plasmid DNA. Here, we have reported an innovative approach for isolation of highly pure and functional plasmid DNA in significant amount, based on generation of "soft protein aggregate" with the help of zwitterionic detergents and alkali. Solibilized proteins and RNA could be removed by a simple and mild washing with Tris buffer of low ionic strength and multimeric plasmid DNA could be eluted in a single step from the protein aggregate. Additionally, isolated plasmid DNA could easily be digested by restriction enzymes and had high functionality in protein expression. Thus, considering both its remarkable simplicity and efficiency in producing sufficiently pure plasmid DNA, the new strategy would emerge a useful tool in modern recombinant technology and therapeutic applications.
从细菌中纯化质粒DNA是重组DNA技术中的一项重要工具,并且已成为从实验室到工业领域的一项基本任务。此外,“基因治疗”和“基因疫苗接种”的最新进展也要求以“千克”级生产药用级质粒DNA。尽管存在许多纯化方案,但几乎所有方案都源自一项开创性工作[Birnboim, H.C., Doly, J., 1979. A rapid extraction procedure for screening recombinant plasmid DNA. Nucleic Acids Res. 7, 1513 - 1523],因此存在一个或多个缺点,例如纯化时间、分离出的质粒DNA的纯度或数量。在此,我们报道了一种创新方法,借助两性离子去污剂和碱生成“软蛋白聚集体”,从而大量分离出高纯度且有功能的质粒DNA。通过用低离子强度的Tris缓冲液进行简单温和的洗涤,可以去除溶解的蛋白质和RNA,并且多聚体质粒DNA可以从蛋白聚集体中一步洗脱出来。此外,分离出的质粒DNA很容易被限制性内切酶消化,并且在蛋白质表达方面具有高功能性。因此,考虑到其在生产足够纯的质粒DNA方面的显著简便性和效率,这种新策略将成为现代重组技术和治疗应用中的一种有用工具。