West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, China.
Department of Medical Oncology, Sichuan Cancer Hospital and Institute, School of Medicine, University of Electronic Science and Technology of China, Chengdu, China.
Thorac Cancer. 2020 Nov;11(11):3409-3415. doi: 10.1111/1759-7714.13660. Epub 2020 Oct 5.
Plasmid construction of small fragments of interest (such as insertion of small fragment marker genes, expression of shRNA, siRNA, etc) is the basis of many biomolecular experiments. Here, we describe a method to clone short DNA into vectors by polymerase chain reaction (PCR), named one-step PCR cloning. Our method uses PCR to amplify the entire circular plasmid. The PCR was performed by the primers containing the gene of short DNA with overlapping sequences between 10-15 bp. The PCR products were then transformed into E. coli and cyclized by homologous recombination in vivo.
The pEGFP-N1-HA plasmid was constructed by one-step PCR and transformation. Cells were transfected with pEGFP-N1-HA and pEGFP-N1 plasmid using TurboFect transfection reagent. Protein expression was detected by western blotting and the HA-GFP fusion protein was detected by confocal microscopy.
The pEGFP-N1-HA plasmid was successfully constructed and HA expression in cells.
Free from the limitations of restriction enzyme sites and omitting the ligation process, our method offers a flexible and economical option of plasmid construction.
Significant findings of the study A method to clone short DNA into plasmids was found. What this study adds Our study provides a flexible and economical option to clone short DNA into plasmids.
将感兴趣的小片段(如插入小片段标记基因、表达 shRNA、siRNA 等)质粒构建是许多生物分子实验的基础。在这里,我们描述了一种通过聚合酶链反应(PCR)将短 DNA 克隆到载体中的方法,称为一步 PCR 克隆。我们的方法使用 PCR 来扩增整个环状质粒。PCR 是通过包含短 DNA 基因的引物进行的,这些引物之间有 10-15bp 的重叠序列。然后将 PCR 产物转化为大肠杆菌,并在体内通过同源重组环化。
通过一步 PCR 和转化构建了 pEGFP-N1-HA 质粒。使用 TurboFect 转染试剂将 pEGFP-N1-HA 和 pEGFP-N1 质粒转染细胞。通过 Western blot 检测蛋白表达,并通过共聚焦显微镜检测 HA-GFP 融合蛋白。
成功构建了 pEGFP-N1-HA 质粒,并在细胞中表达了 HA。
该方法不受限制酶切位点的限制,省略了连接过程,为质粒构建提供了一种灵活、经济的选择。
本研究的重要发现 发现了一种将短 DNA 克隆到质粒中的方法。本研究的意义 本研究为将短 DNA 克隆到质粒中提供了一种灵活、经济的选择。