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Site-directed Ligase-Independent Mutagenesis (SLIM): a single-tube methodology approaching 100 efficiency in 4 h

机译:定点不依赖连接酶的诱变(SLIM):单管方法在4小时内效率达到100%

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摘要

Site-directed, Ligase-Independent Mutagenesis (SLIM) is a novel PCR-mediated mutagenesis approach that can accommodate all three sequence modification types (insertion, deletion and substitution). The method utilizes an inverse PCR amplification of the template by two tailed long primers and two short primers in a single reaction with all steps carried out in one tube. The tailed primers are designed to contain the desired mutation on complementary overhangs at the terminus of PCR products. Upon post-amplification denaturation and re-annealing, heteroduplex formation between the mixed PCR products creates the desired clonable mutated plasmid. The technique is highly robust and suitable for applications in high-throughput gene engineering and library constructions. In this study, SLIM was employed to create sequence insertions, deletion and substitution within bacteriophage T7 gene 5. The overall efficiency for obtaining the desired product was >95%.
机译:定点的,不依赖连接酶的诱变(SLIM)是一种新颖的PCR介导的诱变方法,可以适应所有三种序列修饰类型(插入,缺失和取代)。该方法在一个反应​​中利用两条尾长引物和两条短引物对模板进行反向PCR扩增,所有步骤均在一根试管中进行。尾部引物设计为在PCR产物末端的互补突出端包含所需突变。扩增后变性并重新退火后,混合PCR产物之间的异源双链体形成会产生所需的可克隆突变质粒。该技术具有高度的鲁棒性,适用于高通量基因工程和文库构建。在这项研究中,SLIM被用于在噬菌体T7基因5中产生序列插入,缺失和取代。获得所需产物的总效率为> 95%。

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