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基于聚合酶链式反应的快速且稳健的全重组克隆方法

Rapid and Robust PCR-Based All-Recombinant Cloning Methodology.

作者信息

Dubey Abhishek Anil, Singh Manika Indrajit, Jain Vikas

机构信息

Microbiology and Molecular Biology Laboratory, Department of Biological Sciences, Indian Institute of Science Education and Research (IISER), Bhopal, India.

出版信息

PLoS One. 2016 Mar 23;11(3):e0152106. doi: 10.1371/journal.pone.0152106. eCollection 2016.

Abstract

We report here a PCR-based cloning methodology that requires no post-PCR modifications such as restriction digestion and phosphorylation of the amplified DNA. The advantage of the present method is that it yields only recombinant clones thus eliminating the need for screening. Two DNA amplification reactions by PCR are performed wherein the first reaction amplifies the gene of interest from a source template, and the second reaction fuses it with the designed expression vector fragments. These vector fragments carry the essential elements that are required for the fusion product selection. The entire process can be completed in less than 8 hours. Furthermore, ligation of the amplified DNA by a DNA ligase is not required before transformation, although the procedure yields more number of colonies upon transformation if ligation is carried out. As a proof-of-concept, we show the cloning and expression of GFP, adh, and rho genes. Using GFP production as an example, we further demonstrate that the E. coli T7 express strain can directly be used in our methodology for the protein expression immediately after PCR. The expressed protein is without or with 6xHistidine tag at either terminus, depending upon the chosen vector fragments. We believe that our method will find tremendous use in molecular and structural biology.

摘要

我们在此报告一种基于聚合酶链反应(PCR)的克隆方法,该方法无需进行PCR后修饰,如对扩增DNA进行限制性消化和磷酸化。本方法的优点是仅产生重组克隆,从而无需筛选。通过PCR进行两次DNA扩增反应,其中第一次反应从源模板扩增感兴趣的基因,第二次反应将其与设计的表达载体片段融合。这些载体片段携带融合产物选择所需的基本元件。整个过程可在不到8小时内完成。此外,转化前不需要用DNA连接酶连接扩增的DNA,不过如果进行连接,该程序在转化后会产生更多的菌落。作为概念验证,我们展示了绿色荧光蛋白(GFP)、乙醇脱氢酶(adh)和rho基因的克隆与表达。以GFP产生为例,我们进一步证明,大肠杆菌T7表达菌株可直接用于我们的方法,在PCR后立即进行蛋白质表达。根据所选载体片段,表达的蛋白质在任一末端都没有或带有6x组氨酸标签。我们相信我们的方法将在分子生物学和结构生物学中得到广泛应用。

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