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FastCloning:一种高度简化、无需纯化、无需序列和连接的 PCR 克隆方法。

FastCloning: a highly simplified, purification-free, sequence- and ligation-independent PCR cloning method.

机构信息

Division of Neurobiology, Barrow Neurological Institute, St Joseph's Hospital and Medical Center, Phoenix, AZ, USA.

出版信息

BMC Biotechnol. 2011 Oct 12;11:92. doi: 10.1186/1472-6750-11-92.

Abstract

BACKGROUND

Although a variety of methods and expensive kits are available, molecular cloning can be a time-consuming and frustrating process.

RESULTS

Here we report a highly simplified, reliable, and efficient PCR-based cloning technique to insert any DNA fragment into a plasmid vector or into a gene (cDNA) in a vector at any desired position. With this method, the vector and insert are PCR amplified separately, with only 18 cycles, using a high fidelity DNA polymerase. The amplified insert has the ends with ~16-base overlapping with the ends of the amplified vector. After DpnI digestion of the mixture of the amplified vector and insert to eliminate the DNA templates used in PCR reactions, the mixture is directly transformed into competent E. coli cells to obtain the desired clones. This technique has many advantages over other cloning methods. First, it does not need gel purification of the PCR product or linearized vector. Second, there is no need of any cloning kit or specialized enzyme for cloning. Furthermore, with reduced number of PCR cycles, it also decreases the chance of random mutations. In addition, this method is highly effective and reproducible. Finally, since this cloning method is also sequence independent, we demonstrated that it can be used for chimera construction, insertion, and multiple mutations spanning a stretch of DNA up to 120 bp.

CONCLUSION

Our FastCloning technique provides a very simple, effective, reliable, and versatile tool for molecular cloning, chimera construction, insertion of any DNA sequences of interest and also for multiple mutations in a short stretch of a cDNA.

摘要

背景

尽管有多种方法和昂贵的试剂盒可供选择,但分子克隆可能是一个耗时且令人沮丧的过程。

结果

我们在这里报告了一种高度简化、可靠且高效的基于 PCR 的克隆技术,可将任何 DNA 片段插入质粒载体或载体中的基因(cDNA)中的任何所需位置。使用这种方法,载体和插入物分别进行 PCR 扩增,仅使用高保真 DNA 聚合酶进行 18 个循环。扩增的插入物具有与扩增载体末端约 16 个碱基重叠的末端。在用 DpnI 消化扩增载体和插入物的混合物以消除 PCR 反应中使用的 DNA 模板后,直接将混合物转化为感受态 E. coli 细胞以获得所需的克隆。与其他克隆方法相比,该技术具有许多优势。首先,它不需要对 PCR 产物或线性化载体进行凝胶纯化。其次,不需要任何克隆试剂盒或专门的克隆酶。此外,由于减少了 PCR 循环次数,也降低了随机突变的机会。此外,该方法非常有效且可重复。最后,由于这种克隆方法也是序列无关的,我们证明它可用于嵌合体构建、插入和跨越长达 120 个碱基的 DNA 片段的多个突变。

结论

我们的 FastCloning 技术为分子克隆、嵌合体构建、插入任何感兴趣的 DNA 序列以及在短 cDNA 片段中进行多个突变提供了一种非常简单、有效、可靠和通用的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9333/3207894/61e53980465b/1472-6750-11-92-1.jpg

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