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一种采用改良重叠延伸聚合酶链反应进行多位点诱变的快速高效方法。

A rapid and efficient method for multiple-site mutagenesis with a modified overlap extension PCR.

作者信息

An Yingfeng, Ji Jianfei, Wu Wenfang, Lv Anguo, Huang Ribo, Wei Yutuo

机构信息

Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, China.

出版信息

Appl Microbiol Biotechnol. 2005 Oct;68(6):774-8. doi: 10.1007/s00253-005-1948-8. Epub 2005 Oct 13.

Abstract

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.

摘要

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。

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