Department of Biomedical Engineering, Duke University, Durham, North Carolina, USA.
Nat Protoc. 2011 Feb;6(2):242-51. doi: 10.1038/nprot.2010.181. Epub 2011 Feb 3.
High-throughput genomics, proteomics and synthetic biology studies require ever more efficient and economical strategies to clone complex DNA libraries or variants of biological modules. In this paper, we provide a protocol for a sequence-independent approach for cloning complex individual or combinatorial DNA libraries, and routine or high-throughput cloning of single or multiple DNA fragments. The strategy, called circular polymerase extension cloning (CPEC), is based on polymerase overlap extension and is therefore free of restriction digestion, ligation or single-stranded homologous recombination. CPEC is highly efficient, accurate and user friendly. Once the inserts and the linear vector have been prepared, the CPEC reaction can be completed in 10 min to 3 h, depending on the complexity of the gene libraries.
高通量基因组学、蛋白质组学和合成生物学研究需要更有效和经济的策略来克隆复杂的 DNA 文库或生物模块的变体。在本文中,我们提供了一种用于克隆复杂的单个或组合 DNA 文库以及常规或高通量克隆单个或多个 DNA 片段的无序列依赖性方法。该策略称为圆形聚合酶延伸克隆(CPEC),基于聚合酶重叠延伸,因此无需限制消化、连接或单链同源重组。CPEC 非常高效、准确且易于使用。一旦插入物和线性载体准备好,CPEC 反应可以在 10 分钟到 3 小时内完成,具体取决于基因文库的复杂程度。