An Yingfeng, Ji Jianfei, Wu Wenfang, Lv Anguo, Huang Ribo, Wei Yutuo
Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, China.
Appl Microbiol Biotechnol. 2005 Oct;68(6):774-8. doi: 10.1007/s00253-005-1948-8. Epub 2005 Oct 13.
A rapid and efficient method to perform site-directed mutagenesis based on an improved version of overlap extension by polymerase chain reaction (OE-PCR) is demonstrated in this paper. For this method, which we name modified (M)OE-PCR, there are five steps: (1) synthesis of individual DNA fragments of interest (with average 20-bp overlap between adjacent fragments) by PCR with high-fidelity pfu DNA polymerase, (2) double-mixing (every two adjacent fragments are mixed to implement OE-PCR without primers), (3) pre-extension (the teams above are mixed to obtain full-length reassembled DNA by OE-PCR without primers), (4) synthesis of the entire DNA of interest by PCR with outermost primers and template DNA from step 3, (5) post-extension (ten cycles of PCR at 72 degrees C for annealing and extension are implemented). The method is rapid, simple and error-free. It provides an efficient choice, especially for multiple-site mutagenesis of DNAs; and it can theoretically be applied to the modification of any DNA fragment. Using the MOE-PCR method, we have successfully obtained a modified sam1 gene with eight rare codons optimized simultaneously.
本文展示了一种基于改进的聚合酶链反应重叠延伸法(OE-PCR)进行定点诱变的快速高效方法。对于我们命名为改良(M)OE-PCR的这种方法,有五个步骤:(1)使用高保真pfu DNA聚合酶通过PCR合成感兴趣的单个DNA片段(相邻片段之间平均有20个碱基对的重叠),(2)双重混合(每两个相邻片段混合以在无引物的情况下进行OE-PCR),(3)预延伸(将上述组合混合以在无引物的情况下通过OE-PCR获得全长重新组装的DNA),(4)使用最外层引物和来自步骤3的模板DNA通过PCR合成感兴趣的整个DNA,(5)后延伸(在72℃进行十轮PCR以进行退火和延伸)。该方法快速、简单且无错误。它提供了一种有效的选择,特别是对于DNA的多位点诱变;并且理论上可应用于任何DNA片段的修饰。使用MOE-PCR方法,我们成功获得了同时优化了八个稀有密码子的修饰sam1基因。