Irwin Chad R, Farmer Andrew, Willer David O, Evans David H
Department of Medical Microbiology and Immunology, Li Ka Shing Institute of Virology, University of Alberta, Edmonton, AB, Canada.
Methods Mol Biol. 2012;890:23-35. doi: 10.1007/978-1-61779-876-4_2.
Vaccinia virus DNA polymerase (VVpol) encodes a 3'-to-5' proofreading exonuclease that can degrade the ends of duplex DNA and expose single-stranded DNA tails. The reaction plays a critical role in promoting virus recombination in vivo because single-strand annealing reactions can then fuse molecules sharing complementary tails into recombinant precursors called joint molecules. We have shown that this reaction can also occur in vitro, providing a simple method for the directional cloning of PCR products into any vector of interest. A commercial form of this recombineering technology called In-Fusion(®) that facilitates high-throughput directional cloning of PCR products has been commercialized by Clontech. To effect the in vitro cloning reaction, PCR products are prepared using primers that add 16-18 bp of sequence to each end of the PCR amplicon that are homologous to the two ends of a linearized vector. The linearized vector and PCR products are coincubated with VVpol, which exposes the complementary ends and promotes joint molecule formation. Vaccinia virus single-stranded DNA binding protein can be added to enhance this reaction, although it is not an essential component. The resulting joint molecules are used to transform E. coli, which convert these noncovalently joined molecules into stable recombinants. We illustrate how this technology works by using, as an example, the cloning of the vaccinia N2L gene into the vector pETBlue-2.
痘苗病毒DNA聚合酶(VVpol)编码一种3'至5'校对核酸外切酶,该酶可降解双链DNA的末端并暴露出单链DNA尾巴。该反应在促进体内病毒重组中起关键作用,因为单链退火反应随后可将具有互补尾巴的分子融合成称为连接分子的重组前体。我们已经表明,该反应也可以在体外发生,为将PCR产物定向克隆到任何感兴趣的载体中提供了一种简单方法。一种称为In-Fusion®的重组工程技术的商业形式,它促进了PCR产物的高通量定向克隆,已由Clontech商业化。为了进行体外克隆反应,使用引物制备PCR产物,这些引物在PCR扩增子的每一端添加16 - 18 bp与线性化载体两端同源的序列。将线性化载体和PCR产物与VVpol共同孵育,VVpol会暴露出互补末端并促进连接分子的形成。可以添加痘苗病毒单链DNA结合蛋白来增强此反应,尽管它不是必需成分。所得的连接分子用于转化大肠杆菌,大肠杆菌将这些非共价连接的分子转化为稳定的重组体。我们以将痘苗病毒N2L基因克隆到载体pETBlue-2中为例来说明该技术的工作原理。