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由具有3'突出端的引物对介导的高效定点诱变

Efficient Site-Directed Mutagenesis Mediated by Primer Pairs with 3'-Overhangs.

作者信息

Mousavi Negar, Zhou Ethan, Razavi Arezousadat, Ebrahimi Elham, Varela-Castillo Paulina, Yang Xiang-Jiao

机构信息

Rosalind and Morris Goodman Cancer Institute, McGill University, Montreal, Canada.

Department of Medicine, McGill University, Montreal, Canada.

出版信息

Curr Protoc. 2025 Feb;5(2):e70104. doi: 10.1002/cpz1.70104.

Abstract

Site-directed mutagenesis is an essential tool in molecular biology, protein engineering, plasmid engineering and synthetic biology. While the QuickChange method has been one of the most employed methods for site-directed mutagenesis, it is hindered by low efficiency and frequent introduction of unwanted mutations at the primer sites, raising the urgent need for new, more efficient, and reliable methods. Here, we present an optimized site-directed mutagenesis protocol that leverages partially complementary primer pairs with 3'-overhangs to improve mutagenesis efficiency and reduce error rates. Our method significantly enhances success rates, achieving an average efficiency of ∼50% with some instances approaching the ideal threshold of 100%, while also minimizing the time required for mutant generation. Typically, only 3 colonies need to be analyzed per mutagenesis reaction, and a skillful trainee can engineer 1 to 2 dozen mutant plasmids within a week. In addition, with an in-house protocol for preparing highly competent bacterial cells, we have further increased the reliability and cost-effectiveness of the method. Notably, such competent cells have been kept in a liquid nitrogen tank for >12 years with minimal loss of competency. Thus, this refined method offers a robust, efficient, and scalable solution for high-precision gene modification in vitro, with broad applications in protein and plasmid engineering. © 2025 The Author(s). Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: In vitro site-directed mutagenesis using an optimized primer design strategy Basic Protocol 2: Preparation of high-efficiency chemocompetent DH5α cells for transformation of mutagenized plasmid products Basic Protocol 3: Transformation of chemocompetent DH5α cells and obtaining bacterial colonies with correctly mutagenized plasmid products Alternate Protocol: Transformation if glycerol stocks are unavailable.

摘要

定点诱变是分子生物学、蛋白质工程、质粒工程和合成生物学中的一项重要工具。虽然快速定点诱变方法一直是定点诱变中使用最广泛的方法之一,但它受到效率低下以及引物位点频繁引入不需要的突变的阻碍,这就迫切需要新的、更高效且可靠的方法。在此,我们提出了一种优化的定点诱变方案,该方案利用具有3'端突出端的部分互补引物对来提高诱变效率并降低错误率。我们的方法显著提高了成功率,平均效率达到约50%,有些情况下接近理想的100%阈值,同时还将产生突变体所需的时间减至最少。通常,每个诱变反应只需分析3个菌落,熟练的学员一周内可以构建1到2打突变体质粒。此外,通过内部制备高感受态细菌细胞的方案,我们进一步提高了该方法的可靠性和成本效益。值得注意的是,这种感受态细胞保存在液氮罐中超过12年,感受态损失极小。因此,这种改进的方法为体外高精度基因修饰提供了一种强大、高效且可扩展的解决方案,在蛋白质和质粒工程中有广泛应用。© 2025作者。由Wiley Periodicals LLC出版的《Current Protocols》。基本方案1:使用优化引物设计策略进行体外定点诱变 基本方案2:制备用于转化诱变质粒产物的高效化学感受态DH5α细胞 基本方案3:化学感受态DH5α细胞的转化及获得具有正确诱变质粒产物的细菌菌落 替代方案:如果没有甘油菌液则进行转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aef7/11823567/094b09353655/CPZ1-5-0-g002.jpg

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