de Jong Rob N, Daniëls Mark A, Kaptein Rob, Folkers Gert E
Bijvoet Center for Biomolecular Research, Utrecht University, Padualaan 8, 3584 CH, Utrecht, The Netherlands.
J Struct Funct Genomics. 2006 Dec;7(3-4):109-18. doi: 10.1007/s10969-006-9014-z. Epub 2007 Feb 13.
Structural and functional genomics initiatives significantly improved cloning methods over the past few years. Although recombinational cloning is highly efficient, its costs urged us to search for an alternative high throughput (HTP) cloning method. We implemented a modified Enzyme Free Cloning (EFC) procedure, a PCR-only method that eliminates all variables other than PCR efficiency by circumventing enzymatic treatments. We compared the cloning efficiency of EFC with that of Ligation Independent Cloning (LIC). Both methods are well suited for HTP cloning, but EFC yields three times more transformants and a cloning efficiency of 91%, comparable with recombinational cloning methods and significantly better than LIC (79%). EFC requires only nanogram amounts of both vector and insert, does not require highly competent cells and is, in contrast to LIC, largely insensitive to variations in PCR product concentration. Automated protein expression screening of expression strains directly transformed with EFC reactions showed, that the traditional preceding step via a cloning strain can be circumvented. EFC proves an efficient and robust HTP cloning method, that is compatible with existing Ligation Independent Cloning vectors, and highly suitable for automation.
在过去几年中,结构和功能基因组学计划显著改进了克隆方法。尽管重组克隆效率很高,但其成本促使我们寻找另一种高通量(HTP)克隆方法。我们实施了一种改良的无酶克隆(EFC)程序,这是一种仅通过PCR的方法,通过规避酶处理消除了除PCR效率之外的所有变量。我们将EFC的克隆效率与非连接克隆(LIC)的克隆效率进行了比较。这两种方法都非常适合高通量克隆,但EFC产生的转化子数量是LIC的三倍,克隆效率为91%,与重组克隆方法相当,且明显优于LIC(79%)。EFC仅需要纳克量的载体和插入片段,不需要高感受态细胞,并且与LIC不同,它对PCR产物浓度的变化很大程度上不敏感。对直接用EFC反应转化的表达菌株进行自动蛋白质表达筛选表明,可以规避通过克隆菌株的传统前期步骤。EFC证明是一种高效且稳健的高通量克隆方法,它与现有的非连接克隆载体兼容,并且非常适合自动化。