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Insert restriction enzyme cutting-free cloning strategy for expression plasmid construction

机译:用于表达质粒构建的插入限制酶无切片段克隆策略

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ABSTRACT Plasmids are important tools for producing biological reagents and performing molecular biological investigations. They are often constructed by the traditional restriction digestion/ligation cloning method. However, there are some drawbacks of this method due to its nature. It is time-consuming; sometimes there are no suitable restrictive digestion sites and the efficiency of digestion of the polymerase chain reaction (PCR) products is low. To address these problems, we employed an insert cutting-free cloning (ICFC) method in this work. Two kinds of DNA fragments containing the same gene but different terminal sequences were amplified by PCR. Inserts with desired cohesive ends were generated by successively mixing, denaturing and re-annealing these DNA fragments. Finally, they were ligated to the restriction-endonuclease digested vectors. Using this method, we successfully constructed a STAT3 (signal transducer and activator of transcription????3) expression plasmid. The method proved to be simple and efficient. It made the selection of restriction endonucleases and vectors easier, as well as simplified and shortened the cloning process.
机译:摘要质粒是生产生物试剂和进行分子生物学研究的重要工具。它们通常是通过传统的限制性消化/连接克隆方法构建的。但是,由于其性质,该方法存在一些缺点。这很耗时;有时没有合适的限制性消化位点,聚合酶链反应(PCR)产物的消化效率很低。为了解决这些问题,我们在这项工作中采用了插入无切割克隆(ICFC)方法。通过PCR扩增了包含相同基因但末端序列不同的两种DNA片段。通过将这些DNA片段依次混合,变性和重新退火,可生成具有所需内聚末端的插入片段。最后,将它们连接至限制性内切核酸酶消化的载体。使用这种方法,我们成功地构建了STAT3(信号转导和转录激活因子3)表达质粒。该方法被证明是简单有效的。它使限制性内切核酸酶和载体的选择更加容易,并且简化并缩短了克隆过程。

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