Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD, USA.
PLoS One. 2012;7(12):e52031. doi: 10.1371/journal.pone.0052031. Epub 2012 Dec 17.
We introduce PFunkel, a versatile method for extensive, researcher-defined DNA mutagenesis using a ssDNA or dsDNA template. Once the template DNA is prepared, the method can be completed in a single day in a single tube, and requires no intermediate DNA purification or sub-cloning. PFunkel can be used for site-directed mutagenesis at an efficiency approaching 100%. More importantly, PFunkel allows researchers the unparalleled ability to efficiently construct user-defined libraries. We demonstrate the creation of a library with site-saturation at four distal sites simultaneously at 70% efficiency. We also employ PFunkel to create a comprehensive codon mutagenesis library of the TEM-1 ß-lactamase gene. We designed this library to contain 18,081 members, one for each possible codon substitution in the gene (287 positions in TEM-1 x 63 possible codon substitutions). Deep sequencing revealed that ∼97% of the designed single codon substitutions are present in the library. From such a library we identified 18 previously unreported adaptive mutations that each confer resistance to the ß-lactamase inhibitor tazobactam. Three of these mutations confer resistance equal to or higher than that of the most resistant reported TEM-1 allele and have the potential to emerge clinically.
我们介绍了 PFunkel,这是一种使用单链或双链 DNA 模板进行广泛的、研究人员定义的 DNA 诱变的多功能方法。一旦准备好模板 DNA,该方法可以在单个管中在一天内完成,并且不需要中间 DNA 纯化或亚克隆。PFunkel 可用于接近 100%效率的定点诱变。更重要的是,PFunkel 允许研究人员具有高效构建用户定义文库的无与伦比的能力。我们展示了在四个远端位点同时以 70%的效率进行位点饱和的文库构建。我们还使用 PFunkel 构建了 TEM-1β-内酰胺酶基因的全面密码子诱变文库。我们设计了这个文库,包含 18081 个成员,每个成员代表基因中每个可能的密码子取代(TEM-1 中的 287 个位置 x 63 个可能的密码子取代)。深度测序表明,文库中存在约 97%的设计单密码子取代。从这样的文库中,我们鉴定出 18 种以前未报道的适应性突变,每种突变都能赋予对β-内酰胺酶抑制剂他唑巴坦的抗性。其中三种突变赋予的抗性与报道的最耐药 TEM-1 等位基因相当或更高,并且有可能在临床上出现。